View ValuationGelion 향후 성장Future 기준 점검 2/6Gelion은 연간 수입과 매출이 각각 29.5%와 62.6% 증가할 것으로 예상되고 EPS는 연간 39.4%만큼 증가할 것으로 예상됩니다.핵심 정보29.5%이익 성장률39.38%EPS 성장률Electrical 이익 성장18.7%매출 성장률62.6%향후 자기자본이익률n/a애널리스트 커버리지Low마지막 업데이트04 Jun 2026최근 향후 성장 업데이트공시 • Aug 15Gelion plc Provides Revenue Guidance for Year Ended 30 June 2023Gelion plc provided revenue guidance for year ended 30 June 2023. For the year the company expected to be ahead of current guidance: Revenues for the year are expected to be £2.0 million ahead of current guidance of £1.7 million.모든 업데이트 보기Recent updates공시 • Feb 11Gelion plc to Report First Half, 2026 Results on Mar 02, 2026Gelion plc announced that they will report first half, 2026 results on Mar 02, 2026공시 • Dec 05Gelion plc Achieves Target Areal Capacity in Coin CellsGelion plc has achieved a major technical milestone in the development of its next-generation sulfur battery technology. This achievement marks a major step forward in Gelion's roadmap to delivering high-energy-density, low-cost sulfur-based batteries suitable for e-aviation, electric mobility, stationary storage, and other commercial applications. In this next phase of development, Gelion confirms that its proprietary cathode active material ("Gelion CAM") has crossed the Fourth Quarter threshold demonstrating stable cycling with the industry recognised Fourth Quarter areal capacity (~4 mAh/cm2) in coin cells, the industry standard platform for evaluating new battery materials. Achieving Fourth Quarter is widely regarded as a key milestone for high energy density sulfur cathodes. This demonstrates that Gelion CAM can be processed into thicker, high structural integrity electrodes which provide a critical step towards high energy density performance in large format pouch cells. This is a critical enabler for scaling sulfur-based technology toward commercial grade battery systems. Building on the successful technology transfer from the Max Planck Institute of Colloids and Interfaces (MPI) and the Gelion CAM scale-up announced in September 2025, recent electrode development work shows that Gelion's proprietary material can maintain mechanical stability and controlled porosity even at increased thickness. Achieving these properties is critical to reaching industrially relevant high-areal-capacity electrodes and represents an important benchmark for competitiveness with conventional lithium-ion technology. Historically, increasing sulfur loading in battery electrodes has been limited by rapid degradation of thicker electrodes. Gelion's results indicate that its CAM can overcome these limitations, supporting higher energy per square centimetre while maintaining electrode robustness, a key pathway toward smaller, lighter, and higher-energy battery cells. Achieved Fourth Quarter areal capacity is a core technical requirement for large-format Li-S and Na-S cells and directly supports Gelion's energy-density and cost objectives for next-generation sulfur-based batteries. Key Highlights: Fourth Quarter Achieved in Coin Cells: Gelion has successfully reached its Fourth Quarter areal-capacity target in coin-cell testing, the industry-recognised standard for evaluating advanced battery materials. Fourth Quarter is widely recognised as a critical milestone for practical high-energy-density sulfur cathodes. Clear Technical Progress Toward Pouch Cells: The coin-cell results provide strong evidence supporting the translation of Gelion's CAM into large-format pouch-cell electrodes capable of meeting Fourth Quarter performance targets. Improved Electrode Quality and Consistency: Recent work demonstrates enhanced uniformity, improved adhesion, and reproducible slurry rheology, all compatible with scale-up for larger-format electrodes. Enabling Future High Energy Density Targets: This milestone strengthens Gelion's roadmap toward high-energy-density, high-cost sulfur-based batteries appropriate for e-aviation, Electric mobility, stationary storage, and Other commercial applications.공시 • Nov 27Gelion plc, Annual General Meeting, Dec 22, 2025Gelion plc, Annual General Meeting, Dec 22, 2025. Location: the companys registered office, level 4 ldnw, 3 noble street, ec2v 7ee, london United Kingdom공시 • Nov 25Gelion plc to Report Fiscal Year 2025 Results on Nov 27, 2025Gelion plc announced that they will report fiscal year 2025 results at 8:00 AM, GMT Standard Time on Nov 27, 2025공시 • Oct 22Gelion plc has completed a Follow-on Equity Offering in the amount of £0.5 million.Gelion plc has completed a Follow-on Equity Offering in the amount of £0.5 million. Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 2,500,000 Price\Range: £0.2 Transaction Features: Regulation S공시 • Oct 21Gelion plc has completed a Follow-on Equity Offering in the amount of £10.5 million.Gelion plc has completed a Follow-on Equity Offering in the amount of £10.5 million. Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 50,000,000 Price\Range: £0.2 Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 2,500,000 Price\Range: £0.2 Transaction Features: Regulation S; Subsequent Direct Listing공시 • Oct 17Gelion plc has filed a Follow-on Equity Offering in the amount of £10.5 million.Gelion plc has filed a Follow-on Equity Offering in the amount of £10.5 million. Security Name: Shares Security Type: Common Stock Securities Offered: 50,000,000 Price\Range: £0.2 Security Name: Shares Security Type: Common Stock Securities Offered: 2,500,000 Price\Range: £0.2 Transaction Features: Regulation S; Subsequent Direct Listing공시 • Apr 23Gelion plc has completed a Follow-on Equity Offering in the amount of £0.177466 million.Gelion plc has completed a Follow-on Equity Offering in the amount of £0.177466 million. Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 1,971,845 Price\Range: £0.09공시 • Apr 18+ 1 more updateGelion plc has completed a Follow-on Equity Offering in the amount of £2.029658 million.Gelion plc has completed a Follow-on Equity Offering in the amount of £2.029658 million. Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 9,773,982 Price\Range: £0.09 Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 12,777,771 Price\Range: £0.09 Transaction Features: Regulation S; Subsequent Direct Listing공시 • Apr 17+ 1 more updateGelion plc Achieves Breakthrough in Sulfur Battery Coin Cell ResultsGelion plc announced significant advancements in its Sulfur battery technology, achieving exceptional performance in high power and in cycling characteristics that supports its goals toward compelling commercial market propositions for drones, transportation, and grid and remote energy storage systems. Building upon its recent collaboration with the Max Planck Institute of Colloids and Interfaces (MPI), announced in March 2025, Gelion has successfully integrated MPI's technology into sodium-sulfur coin cells, the industry standard battery testing platform. Initial tests have yielded exceptional results: Superior Power Capability: Maintaining robust capacity retention even under extreme charge /discharge rates, with six-minute charge and six-minute discharge cycles. Outstanding Longevity:Evidence to support MPI testing which achieved over 1,000 charge/discharge cycles with industry-standard capacity retention under one-hour charge and one-hour discharge cycles. Industrially relevant results:These tests represent a progression from laboratory material testing conditions to the industrially relevant coin cell development platform*. The transition from coin cells to larger format commercial cells is a well-established pathway. In this case, it is underpinned by the combined technology introduced by MPI and Gelion and will involve adapting this technology to standard large-format cell parameters and componentry. Advancements in Sulfur Battery Performance:Historically, the commercial adoption of sulfur batteries has been constrained by two key challenges: short cycle life, which has limited their potential use to niche markets, and low power output, making them unsuitable for applications in transportation and aerial drones. Gelion's test results address these prior challenges, paving the way for sulfur battery products to achieve a compelling product-market fit and route to commercial adoption. Enhanced Power Capability:Rapid charge and discharge capabilities are critical for applications in transportation and aerial drones. Again, Gelion's test results more than satisfy this requirement - a key selling point for modern electric vehicles, also supporting the high-power demands of rapid acceleration or drone take-offs and landings. Extended Cycle Life:A battery's cycle life denotes the number of charge and discharge cycles it can undergo without significant performance degradation. According to standards set by the United States Advanced Battery Consortium LLC (USABC), a cycle life exceeding 1,000 cycles is essential for transportation applications and equally critical for stationary energy storage. Current testing results are consistent with achieving this target.공시 • Mar 14Gelion plc to Report First Half, 2025 Results on Mar 19, 2025Gelion plc announced that they will report first half, 2025 results on Mar 19, 2025공시 • Feb 26Gelion plc Announces Successful Grant of Three LiS Patents in the U.SGelion announced the successful award of three patents in the United States in relation to the Group's core Lithium-Sulfur (LiS) technology and the acceptance of one of its recycling patent applications by the United States Patent and Trademark Office (USPTO). Gelion continues to actively pursue, focus, and strengthen its Intellectual Property (IP) portfolio in accordance with its IP Strategy. Gelion's IP strategy includes an ongoing review and assessment of its IP portfolio, of both registered (e.g. patents) and unregistered (e.g. know-how, trade secrets) IP rights to ensure that the Group's IP portfolio continues to align and best protect the key areas of its technology as it matures, with a goal to develop a strong IP portfolio while delivering value for its shareholders. LiS patents granted Gelion has successfully advanced several patent applications pertaining to its core LiS technology, including the granting of three cases in the United States since July 2024. In parallel, Gelion continues to pursue its recycling IP portfolio, with one application recently being accepted in the United States. This application outlines an approach for improving the purity of high-value metals (e.g. nickel, cobalt) recovered from the waste batteries by providing a method for the removal of iron impurities. The Group expects progression of the application in the U.S. will strengthen applications in other major markets, including Europe and China, in line with Gelion's IP strategy to have broad protection of its IP portfolio in key markets globally. Gelion is currently developing its recycling technology with funding support from the UK government, and continues to explore commercialisation opportunities, including securing independent funding in accordance with its strategic plan. Gelion's Recycling IP portfolio now includes 9 patent families (with cases both granted and under examination). Gelion is developing a GEN 3 Lithium Sulfur cell product for its high energy density sulfur cathode at its expanded R&D facilities in Australia and UK, enabling it to integrate with a variety of anodes ranging from graphite to silicon to lithium metal, depending on the targeted application. Gelion's GEN 3 cell is unlocking the potential of sulfur batteries for a wide range of global mobile applications including electrical vertical-take-off-and-landing (eVTOL), drone markets, electric vehicles (EVs) and stationary energy storage (ESS). Advantages of Gelion's GEN 3 Lithium SulfUR - High energy density - Energy density > 400 Wh/kg, when using a 10+ Ah pouch cell. Semi-solid-state /Solid-State as a route to increased longevity/cycle life: GEN 3 employs a semi-solid-state and solid-state mechanism which mitigates the major degradation factor associated with conventional Li-S technology. Increased sulfur utilisation: GEN 3 demonstrates the full theoretical capacity of sulfur, i.e. a much higher sulfur utilisation than found in conventional Li-S approaches. Simplified supply chain: The innovative cathode is produced by mixing commercially available materials with abundant sulfur using a low-energy, room-temperature process, with potential to eliminate the need for pre-fabrication of the sulfur composite (sulfur composite is related to cathode active material in conventional lithium-ion batteries), streamlining the associated supply chain and production process and enabling localised manufacturing. Environmental and economic benefits: The water-based, standard-atmosphere cathode production process eliminates the need for toxic solvents, leading to significant cost savings and enhanced manufacturability. Glossary 1MPa This level of pressure replicates real-world pressure conditions inside batteries and is crucial for ensuring the durability, efficiency, and performance of the separator in practical applications. Cycle life indicates longer-lasting performance. Gelion is adapting its zinc technology to comprise an alternate cathode technology, a zinc hybrid cell to develop complementary next-generation batteries for the lead-acid eco-system. Early testing indicates that this solution has the potential to maintain good energy density levels with enhanced cost and safety aspects. Once fully-lasting performance.공시 • Jan 06Gelion plc Announces Appointment of Dr Graham Cooley as Non-Executive Director and Member of Audit Committee and Remuneration CommitteeGelion plc announced the appointment of Dr Graham Cooley as Non-Executive Director and member of Audit Committee and Remuneration Committee of the Company with immediate effect. Dr Cooley's appointment strengthens the Company's capabilities and corporate governance for the next stage of its growth. Dr Graham Cooley brings a wealth of relevant experience and knowledge to the Gelion Board through his background in the power, energy storage and hydrogen sectors over more than 35 years. He was previously Business Development Manager at National Power plc, the UK's largest power generator, and CEO of ITM Power plc, the first hydrogen related company quoted on AIM. Dr Cooley has been involved in a wide range of corporate transactions, including ones that have raised over £600m for UK cleantech SMEs. He also has a track record of forging industrial partnerships and entering new markets. He has been an active investor in AIM UK cleantech companies for over a decade and holds a PhD in Materials Physics, an MBA and has several fellowship appointments. Dr Cooley has been appointed as a member of the Company's Audit Committee and Remuneration Committee. Dr Graham Edward Cooley, aged 61, Current directorships and/or partnerships: Light Science Technologies Holdings plc; Brigantia Capital Ltd; Cadent Gas Limited;Cap-XX Limited; Quadgas Holdco Limited; Quadgas Investments Bidco Limited; Quadgas Midco Limited; Quadgas Pledgeco Limited; Yelooc Limited; LSTH Trustee Limited; Light Science Technologies Ltd; Tomtech (UK) Limited; LSTH IFB Limited; UK Circuits and Electronics Solutions Limited; UK Circuits and Electronics Solutions Holdings Limited; Quadgas Holdings Topco Limited (UK); Quadgas Holdings Topco Limited (Jersey). Past directorships and/or partnerships (within the last five years): ITM Power plc; H2 Green Ltd; ITM Power UK Limited (formerly ITM Power (Trading) Limited); ITM Power Pty Limited; ITM Linde Electrolysis GmbH; ITM Power ApS; ITM Power Service GmbH; ITM Service GmbH; ITM Power (Shelfco) Limited; ITM Power (Research) Limited; Motive Fuels Limited; Nanosun Limited; Orkney Hydrogen Trading Ltd; Renewable UK Association.공시 • Dec 20+ 1 more updateGelion plc has completed a Follow-on Equity Offering in the amount of £1.515496 million.Gelion plc has completed a Follow-on Equity Offering in the amount of £1.515496 million. Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 6,539,976 Price\Range: £0.15 Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 3,563,333 Price\Range: £0.15 Transaction Features: Regulation S공시 • Dec 19+ 1 more updateGelion plc Receives Grant from the Australian Renewable Energy AgencyGelion has been awarded a c.£2.5 million (AUD 4.8 million) grant by the Australian Renewable Energy Agency as matched funding to implement its Advanced Commercial Prototyping Centre Project in Sydney. The ACPC Project will enable the Group to produce and optimise its next generation GEN 3 Lithium Sulfur (Li-S) and Silicon Sulfur (Si-S) battery technologies and provide these for test and validation by prospective global partners and customers. The Project will commence upon Gelion securing its appropriate co-funding. Gelion has achieved 402 Wh/kg (gravimetric energy density) in a 12 Ah Li-S pouch cell which is over 60% higher than traditional lithium-ion. This makes Gelion's light-weight sulfur battery technologies well suited for high growth applications such as electric aviation, electric vehicles and specific stationary energy storage, such as remote power supply. ARENA's funding will enable Gelion to accelerate its pathway to scale production and revenue, with the ACPC Project targeted to deliver: Production of c. 2000 Li-S and Si-S cells p.a. for validation with potential commercial offtake partners, toward revenue generation; Building out key global supply chain partners to underpin commercial scale up; Third party certification of Gelion sulfur battery safety; Advanced manufacturing methods to create efficiencies when scaling up production (e.g. Gelion's unique in-situ-assembly approach to sustainable electrode production giving Gelion a strong advantage in reducing production costs and carbon footprint). During this Project, Gelion will aim to successfully validate its products with partners and then seek to scale up production to match offtake demand. Gelion plans to work closely with ARENA regarding potential commercial scale up grant funding opportunities in the future. The ACPC Project aligns with ARENA's strategic priority to improve the economics of energy storage through the use of novel battery chemistries. It also has alignment with the Battery Breakthrough Initiative, which was announced by the Australian Government in the 2024-25 Budget to promote the development of battery manufacturing capabilities.공시 • Dec 06+ 1 more updateGelion plc to Report Fiscal Year 2024 Results on Dec 27, 2024Gelion plc announced that they will report fiscal year 2024 results at 11:00 AM, GMT Standard Time on Dec 27, 2024공시 • Nov 14Gelion plc Produces Solid-State Separator Suitable for Li-S and Li-NMC Batteries Via Oxford University's Breakthrough TechnologyGelion plc announced it has successfully fabricated advanced sulfide-based solid-state separators utilising the novel Intellectual Property (IP) licensed from Oxford University Innovation Limited (Oxford University). This result enables Gelion to proceed to the next stage of optimization for this separator which has the potential to not just increase the cycle life of existing lithium metal batteries but also for Gelion's high energy density GEN 3 lithium-sulfur (LiS) cells. Solid Electrolyte Separators (SES) are recognized as a key enabler to long duration high energy lithium metal batteries due to their potential to increase safety, cycle life and energy density of battery technologies in which they are employed. Their implementation has been hampered due to challenges in their processability and manufacture and this successful fabrication is an important step to solving these challenges. Significantly, these advancements: introduces another potential revenue stream by way of licensing to Lithium nickel manganese cobalt oxides (Li-NMC) battery manufacturers, when optimized to enable scaled production of the SES; facilitate the incorporation of SES into liquid-based Li-metal (e.g., Li-NMC and Lithium-air (Li-air) battery technologies), Li-S and solid-state Li-ion/Li-S cell assembly; relax the operational requirements (i.e. external pressure and temperature) of solid-state batteries that comprise this SES technology making this technology more viable for commercialization.공시 • Aug 15Gelion Announces an Update on Its Next Generation Lithium-Sulfur (Li-S) Battery DevelopmentGelion announces an update on its Next Generation ("GEN 3") Lithium-Sulfur (Li-S) battery development. Building on the announcements made in March and April 2024, Gelion has now successfully developed 1 Ah semi-solid-state Li-S pouch cells with its GEN 3 cell technology. The Company's modelling from these 1 Ah GEN 3 cells predicts that a 10 Ah cell can be expected to deliver energy density greater than 400 Wh/kg. Gelion's GEN 3 technology uses a unique sulfur cathode material (fabricated using a unique, low energy process carried out at room temperature), water-based cathode processing (non-toxic), and a proprietary liquid electrolyte. The GEN 3 platform is based on a specially engineered formulation of commercially available materials in combination with abundant sulfur to demonstrate high energy density and operational temperature capability. Benefits of Gelion's GEN 3 over GEN 2 · Higher energy density -Energy density expected to be greater than 400 Wh/kg, when using a 10 Ah pouch cell. · Increased longevity/cycle life: GEN 3 employs new sulfur chemistry to increase stability, addressing the major degradation factors associated with conventional Li-S technology. · Increased sulfur utilisation:GEN 3 demonstrates the full theoretical capacity of sulfur, i.e. a much higher sulfur utilisation than found in conventional Li-S approaches. · Simplified supply chain:The innovative cathode combines specially engineered, but commercially available, materials with abundant sulfur that are produced using a low-energy, room-temperature process, eliminating the need for pre-processing, streamlining the battery production process and enabling localised manufacturing. Environmental and economic benefits:The water-based, atmospheric cathode production process eliminates the need for toxic solvents, leading to significant cost savings and enhanced manufacturability. GEN 3 uses the extensive network of Li-S technologies developed within Gelion and contained in the patents acquired from Johnson Matthey in March 2023. The GEN 3 semi-solid-state Li-S cell builds on the GEN 2 Li-S cell (developed by OXIS Energy) and addresses the key barriers to commercialisation faced by typical lithium-sulfur developers. Sulfur, being an abundant material, offers a future not limited by geographically concentrated and controlled battery metals. However, other lithium-sulfur developers often require the use of hard to obtain, rare or costly materials and have to rely on high-energy and time-consuming processes. Gelion's GEN 3 platform and production process circumvents these barriers. The GEN 3 cell is designed to tolerate higher operational temperatures by using Gelion's proprietary 'SulfurLock electrolyte' - which is free from temperature-sensitive additives typically found in Li-S batteries. Additionally, this electrolyte has been engineered to prevent sulfur redistribution during operation, increasing cycle life, addressing the primary cause of degradation in Li-S batteries. Gelion's cathode uses a proprietary sulfur active cathode material, fabricated using a unique, low energy process performed at room temperature. By using this process, Gelion can eliminate the need to pre-fabricate the cathode-active material. This has the potential to simplify the battery supply chain and make the production of sulfur batteries not only easier, but also more cost efficient than is the case for lithium-ion batteries, enhancing the manufacturing options geographically.공시 • Apr 04Gelion Announces Update on Its Next Generation Lithium-Sulfur (Li-S) Battery DevelopmentGelion announced an update on its Next Generation Lithium-Sulfur (Li-S) battery development. Gelion has achieved a high energy density milestone by fabricating a 395 Wh/kg lithium-sulfur 9.5 Ah pouch cell (commercial cell format). This result represents a c. 60% increase in the energy density (lower weight) compared with current lithium-ion batteries (approximately 250 Wh/kg). Further to the announcement on 19 March 2024, Gelion had produced 1.0 Ah cells using the OXIS Gen2 cell technology that achieved energy density of 245 Wh/kg. The achievement of 395 Wh/kg aligns with the independent energy density modelling projections for a larger cell format. Achievement of this milestone represents a key technology proof point for Gelion. By re-establishing this performance, building on the OXIS Gen 2 technology and IP acquired from Johnson Matthey. The Company has set a new benchmark against which to compare upcoming 'Next Generation' cell which targets further performance improvements upon this announced result. On 19 March 2024, Gelion identified that testing of Next Generation cell technology is exhibiting expected solid-to-solid conversion (see Glossary)behaviourtoward enhanced stability and longevity. will continue to progress these developments in addition to the silicon-sulfur cell technology in cooperation with Ionblox. Gelion's ambition for its next generation platform is to unlock the potential of sulfur batteries for a wide range of global applications including electric vertical-takeoff-and-landing (eVTOL) aircraft, drones, electric vehicles (EV), and stationary energy storage (ESS), as high Wh/kg translates to lighter batteries and opens many advantages for these markets. Sulfur being an abundant material offers a future not limited by geographically concentrated and controlled battery metals which significantly improves battery lifecycle sustainability. In May 2023, Gelion updated on the progress made using the battery technology package acquired from Johnson Matthey (containing, in addition to its own IP, the Li-S IP and know-how from OXIS Energy). Gelion has worked over the past nine months to benchmark, improve on, and define a next generation approach to Li-S battery development. Li-S batteries are an advanced alternative to Li-ion batteries that can achieve much greater gravimetric energy densities (measured as amount of energy per battery weight). This is critical to drive down the weight in mobile applications such as EV's, e-aviation, and drones, reducing auxiliary component cost and lessening their upfront environmental impact. They do not contain rare metals in the cathode and can be scaled to meet the demands of global electrification. The technology shows promise to be safer (lower risk of fires) than current batteries.공시 • Mar 21Gelion plc to Report First Half, 2024 Results on Mar 27, 2024Gelion plc announced that they will report first half, 2024 results on Mar 27, 2024공시 • Feb 05Gelion plc Announces Board AppointmentsGelion plc announced the appointment of Dr. Louis Adriaenssens as Chief Technological Officer (CTO) of the company and Dr. Adrien Amigues as President of Gelion UK and Europe, with immediate effect. Louis joins Gelion with exceptional experience in specialist battery innovation, manufacture and commercialisation, having most recently worked in Nevada as the Supervisor of Chemistry for Panasonic at the Tesla Gigafactory, where he and his team looked after the processes associated with the production of approximately 5 million battery cells per day. A contributing author/inventor of leading scientific articles and significant patents across the fields of materials chemistry, electrochemistry and synthesis, Louis will lead a technical team of over 20 PhD or graduate level engineers and scientists, across Australia and the UK stewarding a portfolio including 470 patents in 76 patent families (including new patents under application). The appointment of a CTO comes at a pivotal time in the development of Gelion's Lithium-Sulfur (LiS) and Zinc-based (Zn) battery technologies and operational expansion into the UK and Europe. This follows the acquisition of OXLiD Ltd. in November 2023, whose founder Dr. Adrien Amigues will now take up the role of President of Gelion UK and Europe. Gelion founder and Principal Technology Adviser, Professor Thomas Maschmeyer, will continue with all his leadership contributions and governance roles within the Group.공시 • Nov 29+ 1 more updateGelion plc to Report Fiscal Year 2023 Results on Dec 12, 2023Gelion plc announced that they will report fiscal year 2023 results on Dec 12, 2023공시 • Nov 25Gelion plc has completed a Follow-on Equity Offering in the amount of £4.491206 million.Gelion plc has completed a Follow-on Equity Offering in the amount of £4.491206 million. Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 1,875,000 Price\Range: £0.24 Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 16,838,358 Price\Range: £0.24 Transaction Features: Regulation S공시 • Nov 11Gelion plc has filed a Follow-on Equity Offering in the amount of €4 million.Gelion plc has filed a Follow-on Equity Offering in the amount of €4 million. Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 16,666,667 Price\Range: €0.24공시 • Nov 10Gelion plc (AIM:GELN) signed an agreement to acquire Oxlid Ltd for £4.2 million.Gelion plc (AIM:GELN) signed an agreement to acquire Oxlid Ltd for Approximately £4.2 million on November 9, 2023.Cavendish Capital Markets Limited acted as financial advisor to Gelion plc (AIM:GELN).공시 • Aug 15Gelion plc Provides Revenue Guidance for Year Ended 30 June 2023Gelion plc provided revenue guidance for year ended 30 June 2023. For the year the company expected to be ahead of current guidance: Revenues for the year are expected to be £2.0 million ahead of current guidance of £1.7 million.공시 • Jul 06Gelion plc Updates on the Strategic Evaluation of Its Zinc Battery Solution and on Advances Made on Its Lithium Sulfur TechnologyGelion plc provided an update on the strategic evaluation of its Zinc battery solution and on advances made on its Lithium Sulfur technology. The Company's match to market analysis to define the operational parameters of Gelion's zinc bromide ('ZnBr 2') battery highlighted the need to balance three key priorities - safety, energy density and cost and consistent with this, the 12-month ZnBr 2 research programme ("R&D Programme") was launched earlier this year. Strong early progress has been made on the anode side, with significantly improved zinc plating behaviour, achieving improved system behaviour (reducing and potentially eliminating the need to fully discharge the battery periodically for maintenance), however, the R&D Programme also identified potential safety concerns on the cathode side, arising from efficacy of the approach of sequestering bromine in the battery. Gelion continued R&D for the cathode, and it has now identified and is migrating to a zinc solution that avoids the potential safety concerns arising from sequestering bromine. Successful validation is expected to result in a technology with safety, energy density and cost ambitions achieved at the same time. Gelion expects to validate the potential of this technology over the next six months and report back in early 2024, keeping in line with the timelines communicated for the current R&D Programme. Management believes that this solution is highly desirable to Gelion's end market and will accelerate Gelion's ability to scale-up into commercial production. Lithium Sulfur: Management is encouraged by the progress being made toward realising the potential of intellectual property packages acquired from Johnson Matthey when combined with Gelion's existing technologies. Gelion therefore intends to increase the testing capacity of its research and development facilities in this regard by 50%. Based in Sydney, the site will have the capability to increase Gelion's prototyping toward cell development and is due to be operational in September 2023.이익 및 매출 성장 예측OTCPK:GELN.F - 애널리스트 향후 추정치 및 과거 재무 데이터 (GBP Millions)날짜매출이익자유현금흐름영업현금흐름평균 애널리스트 수6/30/20287-6-7-716/30/20272-6-6-616/30/20262-7-7-6212/31/20253-6-5-5N/A9/30/20253-6-5-4N/A6/30/20253-6-5-4N/A3/31/20253-7-5-5N/A12/31/20242-7-5-5N/A9/30/20242-8-6-5N/A6/30/20242-8-6-5N/A3/31/20242-7-8-5N/A12/31/20232-7-9-5N/A9/30/20232-7-9-6N/A6/30/20232-7-9-6N/A3/31/20232-7-8-6N/A12/31/20222-7-7-6N/A9/30/20222-8-6-5N/A6/30/20222-9-6-5N/A3/31/20221-8-5-4N/A12/31/20211-8-4-3N/A9/30/20211-5-3-2N/A6/30/20212-2-2-1N/A6/30/20200-2-3-3N/A9/30/2019N/A0N/AN/AN/A6/30/2019N/A-2N/A-2N/A9/30/2018N/A0N/AN/AN/A9/30/2017N/A0N/AN/AN/A더 보기애널리스트 향후 성장 전망수입 대 저축률: GELN.F 향후 3년 동안 수익성이 없을 것으로 예상됩니다.수익 vs 시장: GELN.F 향후 3년 동안 수익성이 없을 것으로 예상됩니다.고성장 수익: GELN.F 향후 3년 동안 수익성이 없을 것으로 예상됩니다.수익 대 시장: GELN.F 의 수익(연간 62.6%)이 US 시장(연간 11.9%)보다 빠르게 성장할 것으로 예상됩니다.고성장 매출: GELN.F 의 수익(연간 62.6%)은 연간 20%보다 빠르게 증가할 것으로 예상됩니다.주당순이익 성장 예측향후 자기자본이익률미래 ROE: GELN.F의 자본 수익률이 3년 후 높을 것으로 예상되는지 판단하기에 데이터가 부족합니다.성장 기업 찾아보기7D1Y7D1Y7D1YCapital-goods 산업의 고성장 기업.View Past Performance기업 분석 및 재무 데이터 상태데이터최종 업데이트 (UTC 시간)기업 분석2026/06/09 07:59종가2026/05/28 00:00수익2025/12/31연간 수익2025/06/30데이터 소스당사의 기업 분석에 사용되는 데이터는 S&P Global Market Intelligence LLC에서 제공됩니다. 아래 데이터는 이 보고서를 생성하기 위해 분석 모델에서 사용됩니다. 데이터는 정규화되므로 소스가 제공된 후 지연이 발생할 수 있습니다.패키지데이터기간미국 소스 예시 *기업 재무제표10년손익계산서현금흐름표대차대조표SEC 양식 10-KSEC 양식 10-Q분석가 컨센서스 추정치+3년재무 예측분석가 목표주가분석가 리서치 보고서Blue Matrix시장 가격30년주가배당, 분할 및 기타 조치ICE 시장 데이터SEC 양식 S-1지분 구조10년주요 주주내부자 거래SEC 양식 4SEC 양식 13D경영진10년리더십 팀이사회SEC 양식 10-KSEC 양식 DEF 14A주요 개발10년회사 공시SEC 양식 8-K* 미국 증권에 대한 예시이며, 비(非)미국 증권에는 해당 국가의 규제 서식 및 자료원을 사용합니다.별도로 명시되지 않는 한 모든 재무 데이터는 연간 기간을 기준으로 하지만 분기별로 업데이트됩니다. 이를 TTM(최근 12개월) 또는 LTM(지난 12개월) 데이터라고 합니다. 자세히 알아보기.분석 모델 및 스노우플레이크이 보고서를 생성하는 데 사용된 분석 모델에 대한 자세한 내용은 당사의 Github 페이지에서 확인하실 수 있습니다. 또한 보고서 활용 방법에 대한 가이드와 YouTube 튜토리얼도 제공합니다.Simply Wall St 분석 모델을 설계하고 구축한 세계적 수준의 팀에 대해 알아보세요.산업 및 섹터 지표산업 및 섹터 지표는 Simply Wall St가 6시간마다 계산하며, 프로세스에 대한 자세한 내용은 Github에서 확인할 수 있습니다.분석가 소스Gelion plc는 2명의 분석가가 다루고 있습니다. 이 중 2명의 분석가가 우리 보고서에 입력 데이터로 사용되는 매출 또는 수익 추정치를 제출했습니다. 분석가의 제출 자료는 하루 종일 업데이트됩니다.분석가기관David Paul St. JohnsonAllenby Capital LimitedAdam ForsythLongspur Clean Energy
공시 • Aug 15Gelion plc Provides Revenue Guidance for Year Ended 30 June 2023Gelion plc provided revenue guidance for year ended 30 June 2023. For the year the company expected to be ahead of current guidance: Revenues for the year are expected to be £2.0 million ahead of current guidance of £1.7 million.
공시 • Feb 11Gelion plc to Report First Half, 2026 Results on Mar 02, 2026Gelion plc announced that they will report first half, 2026 results on Mar 02, 2026
공시 • Dec 05Gelion plc Achieves Target Areal Capacity in Coin CellsGelion plc has achieved a major technical milestone in the development of its next-generation sulfur battery technology. This achievement marks a major step forward in Gelion's roadmap to delivering high-energy-density, low-cost sulfur-based batteries suitable for e-aviation, electric mobility, stationary storage, and other commercial applications. In this next phase of development, Gelion confirms that its proprietary cathode active material ("Gelion CAM") has crossed the Fourth Quarter threshold demonstrating stable cycling with the industry recognised Fourth Quarter areal capacity (~4 mAh/cm2) in coin cells, the industry standard platform for evaluating new battery materials. Achieving Fourth Quarter is widely regarded as a key milestone for high energy density sulfur cathodes. This demonstrates that Gelion CAM can be processed into thicker, high structural integrity electrodes which provide a critical step towards high energy density performance in large format pouch cells. This is a critical enabler for scaling sulfur-based technology toward commercial grade battery systems. Building on the successful technology transfer from the Max Planck Institute of Colloids and Interfaces (MPI) and the Gelion CAM scale-up announced in September 2025, recent electrode development work shows that Gelion's proprietary material can maintain mechanical stability and controlled porosity even at increased thickness. Achieving these properties is critical to reaching industrially relevant high-areal-capacity electrodes and represents an important benchmark for competitiveness with conventional lithium-ion technology. Historically, increasing sulfur loading in battery electrodes has been limited by rapid degradation of thicker electrodes. Gelion's results indicate that its CAM can overcome these limitations, supporting higher energy per square centimetre while maintaining electrode robustness, a key pathway toward smaller, lighter, and higher-energy battery cells. Achieved Fourth Quarter areal capacity is a core technical requirement for large-format Li-S and Na-S cells and directly supports Gelion's energy-density and cost objectives for next-generation sulfur-based batteries. Key Highlights: Fourth Quarter Achieved in Coin Cells: Gelion has successfully reached its Fourth Quarter areal-capacity target in coin-cell testing, the industry-recognised standard for evaluating advanced battery materials. Fourth Quarter is widely recognised as a critical milestone for practical high-energy-density sulfur cathodes. Clear Technical Progress Toward Pouch Cells: The coin-cell results provide strong evidence supporting the translation of Gelion's CAM into large-format pouch-cell electrodes capable of meeting Fourth Quarter performance targets. Improved Electrode Quality and Consistency: Recent work demonstrates enhanced uniformity, improved adhesion, and reproducible slurry rheology, all compatible with scale-up for larger-format electrodes. Enabling Future High Energy Density Targets: This milestone strengthens Gelion's roadmap toward high-energy-density, high-cost sulfur-based batteries appropriate for e-aviation, Electric mobility, stationary storage, and Other commercial applications.
공시 • Nov 27Gelion plc, Annual General Meeting, Dec 22, 2025Gelion plc, Annual General Meeting, Dec 22, 2025. Location: the companys registered office, level 4 ldnw, 3 noble street, ec2v 7ee, london United Kingdom
공시 • Nov 25Gelion plc to Report Fiscal Year 2025 Results on Nov 27, 2025Gelion plc announced that they will report fiscal year 2025 results at 8:00 AM, GMT Standard Time on Nov 27, 2025
공시 • Oct 22Gelion plc has completed a Follow-on Equity Offering in the amount of £0.5 million.Gelion plc has completed a Follow-on Equity Offering in the amount of £0.5 million. Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 2,500,000 Price\Range: £0.2 Transaction Features: Regulation S
공시 • Oct 21Gelion plc has completed a Follow-on Equity Offering in the amount of £10.5 million.Gelion plc has completed a Follow-on Equity Offering in the amount of £10.5 million. Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 50,000,000 Price\Range: £0.2 Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 2,500,000 Price\Range: £0.2 Transaction Features: Regulation S; Subsequent Direct Listing
공시 • Oct 17Gelion plc has filed a Follow-on Equity Offering in the amount of £10.5 million.Gelion plc has filed a Follow-on Equity Offering in the amount of £10.5 million. Security Name: Shares Security Type: Common Stock Securities Offered: 50,000,000 Price\Range: £0.2 Security Name: Shares Security Type: Common Stock Securities Offered: 2,500,000 Price\Range: £0.2 Transaction Features: Regulation S; Subsequent Direct Listing
공시 • Apr 23Gelion plc has completed a Follow-on Equity Offering in the amount of £0.177466 million.Gelion plc has completed a Follow-on Equity Offering in the amount of £0.177466 million. Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 1,971,845 Price\Range: £0.09
공시 • Apr 18+ 1 more updateGelion plc has completed a Follow-on Equity Offering in the amount of £2.029658 million.Gelion plc has completed a Follow-on Equity Offering in the amount of £2.029658 million. Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 9,773,982 Price\Range: £0.09 Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 12,777,771 Price\Range: £0.09 Transaction Features: Regulation S; Subsequent Direct Listing
공시 • Apr 17+ 1 more updateGelion plc Achieves Breakthrough in Sulfur Battery Coin Cell ResultsGelion plc announced significant advancements in its Sulfur battery technology, achieving exceptional performance in high power and in cycling characteristics that supports its goals toward compelling commercial market propositions for drones, transportation, and grid and remote energy storage systems. Building upon its recent collaboration with the Max Planck Institute of Colloids and Interfaces (MPI), announced in March 2025, Gelion has successfully integrated MPI's technology into sodium-sulfur coin cells, the industry standard battery testing platform. Initial tests have yielded exceptional results: Superior Power Capability: Maintaining robust capacity retention even under extreme charge /discharge rates, with six-minute charge and six-minute discharge cycles. Outstanding Longevity:Evidence to support MPI testing which achieved over 1,000 charge/discharge cycles with industry-standard capacity retention under one-hour charge and one-hour discharge cycles. Industrially relevant results:These tests represent a progression from laboratory material testing conditions to the industrially relevant coin cell development platform*. The transition from coin cells to larger format commercial cells is a well-established pathway. In this case, it is underpinned by the combined technology introduced by MPI and Gelion and will involve adapting this technology to standard large-format cell parameters and componentry. Advancements in Sulfur Battery Performance:Historically, the commercial adoption of sulfur batteries has been constrained by two key challenges: short cycle life, which has limited their potential use to niche markets, and low power output, making them unsuitable for applications in transportation and aerial drones. Gelion's test results address these prior challenges, paving the way for sulfur battery products to achieve a compelling product-market fit and route to commercial adoption. Enhanced Power Capability:Rapid charge and discharge capabilities are critical for applications in transportation and aerial drones. Again, Gelion's test results more than satisfy this requirement - a key selling point for modern electric vehicles, also supporting the high-power demands of rapid acceleration or drone take-offs and landings. Extended Cycle Life:A battery's cycle life denotes the number of charge and discharge cycles it can undergo without significant performance degradation. According to standards set by the United States Advanced Battery Consortium LLC (USABC), a cycle life exceeding 1,000 cycles is essential for transportation applications and equally critical for stationary energy storage. Current testing results are consistent with achieving this target.
공시 • Mar 14Gelion plc to Report First Half, 2025 Results on Mar 19, 2025Gelion plc announced that they will report first half, 2025 results on Mar 19, 2025
공시 • Feb 26Gelion plc Announces Successful Grant of Three LiS Patents in the U.SGelion announced the successful award of three patents in the United States in relation to the Group's core Lithium-Sulfur (LiS) technology and the acceptance of one of its recycling patent applications by the United States Patent and Trademark Office (USPTO). Gelion continues to actively pursue, focus, and strengthen its Intellectual Property (IP) portfolio in accordance with its IP Strategy. Gelion's IP strategy includes an ongoing review and assessment of its IP portfolio, of both registered (e.g. patents) and unregistered (e.g. know-how, trade secrets) IP rights to ensure that the Group's IP portfolio continues to align and best protect the key areas of its technology as it matures, with a goal to develop a strong IP portfolio while delivering value for its shareholders. LiS patents granted Gelion has successfully advanced several patent applications pertaining to its core LiS technology, including the granting of three cases in the United States since July 2024. In parallel, Gelion continues to pursue its recycling IP portfolio, with one application recently being accepted in the United States. This application outlines an approach for improving the purity of high-value metals (e.g. nickel, cobalt) recovered from the waste batteries by providing a method for the removal of iron impurities. The Group expects progression of the application in the U.S. will strengthen applications in other major markets, including Europe and China, in line with Gelion's IP strategy to have broad protection of its IP portfolio in key markets globally. Gelion is currently developing its recycling technology with funding support from the UK government, and continues to explore commercialisation opportunities, including securing independent funding in accordance with its strategic plan. Gelion's Recycling IP portfolio now includes 9 patent families (with cases both granted and under examination). Gelion is developing a GEN 3 Lithium Sulfur cell product for its high energy density sulfur cathode at its expanded R&D facilities in Australia and UK, enabling it to integrate with a variety of anodes ranging from graphite to silicon to lithium metal, depending on the targeted application. Gelion's GEN 3 cell is unlocking the potential of sulfur batteries for a wide range of global mobile applications including electrical vertical-take-off-and-landing (eVTOL), drone markets, electric vehicles (EVs) and stationary energy storage (ESS). Advantages of Gelion's GEN 3 Lithium SulfUR - High energy density - Energy density > 400 Wh/kg, when using a 10+ Ah pouch cell. Semi-solid-state /Solid-State as a route to increased longevity/cycle life: GEN 3 employs a semi-solid-state and solid-state mechanism which mitigates the major degradation factor associated with conventional Li-S technology. Increased sulfur utilisation: GEN 3 demonstrates the full theoretical capacity of sulfur, i.e. a much higher sulfur utilisation than found in conventional Li-S approaches. Simplified supply chain: The innovative cathode is produced by mixing commercially available materials with abundant sulfur using a low-energy, room-temperature process, with potential to eliminate the need for pre-fabrication of the sulfur composite (sulfur composite is related to cathode active material in conventional lithium-ion batteries), streamlining the associated supply chain and production process and enabling localised manufacturing. Environmental and economic benefits: The water-based, standard-atmosphere cathode production process eliminates the need for toxic solvents, leading to significant cost savings and enhanced manufacturability. Glossary 1MPa This level of pressure replicates real-world pressure conditions inside batteries and is crucial for ensuring the durability, efficiency, and performance of the separator in practical applications. Cycle life indicates longer-lasting performance. Gelion is adapting its zinc technology to comprise an alternate cathode technology, a zinc hybrid cell to develop complementary next-generation batteries for the lead-acid eco-system. Early testing indicates that this solution has the potential to maintain good energy density levels with enhanced cost and safety aspects. Once fully-lasting performance.
공시 • Jan 06Gelion plc Announces Appointment of Dr Graham Cooley as Non-Executive Director and Member of Audit Committee and Remuneration CommitteeGelion plc announced the appointment of Dr Graham Cooley as Non-Executive Director and member of Audit Committee and Remuneration Committee of the Company with immediate effect. Dr Cooley's appointment strengthens the Company's capabilities and corporate governance for the next stage of its growth. Dr Graham Cooley brings a wealth of relevant experience and knowledge to the Gelion Board through his background in the power, energy storage and hydrogen sectors over more than 35 years. He was previously Business Development Manager at National Power plc, the UK's largest power generator, and CEO of ITM Power plc, the first hydrogen related company quoted on AIM. Dr Cooley has been involved in a wide range of corporate transactions, including ones that have raised over £600m for UK cleantech SMEs. He also has a track record of forging industrial partnerships and entering new markets. He has been an active investor in AIM UK cleantech companies for over a decade and holds a PhD in Materials Physics, an MBA and has several fellowship appointments. Dr Cooley has been appointed as a member of the Company's Audit Committee and Remuneration Committee. Dr Graham Edward Cooley, aged 61, Current directorships and/or partnerships: Light Science Technologies Holdings plc; Brigantia Capital Ltd; Cadent Gas Limited;Cap-XX Limited; Quadgas Holdco Limited; Quadgas Investments Bidco Limited; Quadgas Midco Limited; Quadgas Pledgeco Limited; Yelooc Limited; LSTH Trustee Limited; Light Science Technologies Ltd; Tomtech (UK) Limited; LSTH IFB Limited; UK Circuits and Electronics Solutions Limited; UK Circuits and Electronics Solutions Holdings Limited; Quadgas Holdings Topco Limited (UK); Quadgas Holdings Topco Limited (Jersey). Past directorships and/or partnerships (within the last five years): ITM Power plc; H2 Green Ltd; ITM Power UK Limited (formerly ITM Power (Trading) Limited); ITM Power Pty Limited; ITM Linde Electrolysis GmbH; ITM Power ApS; ITM Power Service GmbH; ITM Service GmbH; ITM Power (Shelfco) Limited; ITM Power (Research) Limited; Motive Fuels Limited; Nanosun Limited; Orkney Hydrogen Trading Ltd; Renewable UK Association.
공시 • Dec 20+ 1 more updateGelion plc has completed a Follow-on Equity Offering in the amount of £1.515496 million.Gelion plc has completed a Follow-on Equity Offering in the amount of £1.515496 million. Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 6,539,976 Price\Range: £0.15 Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 3,563,333 Price\Range: £0.15 Transaction Features: Regulation S
공시 • Dec 19+ 1 more updateGelion plc Receives Grant from the Australian Renewable Energy AgencyGelion has been awarded a c.£2.5 million (AUD 4.8 million) grant by the Australian Renewable Energy Agency as matched funding to implement its Advanced Commercial Prototyping Centre Project in Sydney. The ACPC Project will enable the Group to produce and optimise its next generation GEN 3 Lithium Sulfur (Li-S) and Silicon Sulfur (Si-S) battery technologies and provide these for test and validation by prospective global partners and customers. The Project will commence upon Gelion securing its appropriate co-funding. Gelion has achieved 402 Wh/kg (gravimetric energy density) in a 12 Ah Li-S pouch cell which is over 60% higher than traditional lithium-ion. This makes Gelion's light-weight sulfur battery technologies well suited for high growth applications such as electric aviation, electric vehicles and specific stationary energy storage, such as remote power supply. ARENA's funding will enable Gelion to accelerate its pathway to scale production and revenue, with the ACPC Project targeted to deliver: Production of c. 2000 Li-S and Si-S cells p.a. for validation with potential commercial offtake partners, toward revenue generation; Building out key global supply chain partners to underpin commercial scale up; Third party certification of Gelion sulfur battery safety; Advanced manufacturing methods to create efficiencies when scaling up production (e.g. Gelion's unique in-situ-assembly approach to sustainable electrode production giving Gelion a strong advantage in reducing production costs and carbon footprint). During this Project, Gelion will aim to successfully validate its products with partners and then seek to scale up production to match offtake demand. Gelion plans to work closely with ARENA regarding potential commercial scale up grant funding opportunities in the future. The ACPC Project aligns with ARENA's strategic priority to improve the economics of energy storage through the use of novel battery chemistries. It also has alignment with the Battery Breakthrough Initiative, which was announced by the Australian Government in the 2024-25 Budget to promote the development of battery manufacturing capabilities.
공시 • Dec 06+ 1 more updateGelion plc to Report Fiscal Year 2024 Results on Dec 27, 2024Gelion plc announced that they will report fiscal year 2024 results at 11:00 AM, GMT Standard Time on Dec 27, 2024
공시 • Nov 14Gelion plc Produces Solid-State Separator Suitable for Li-S and Li-NMC Batteries Via Oxford University's Breakthrough TechnologyGelion plc announced it has successfully fabricated advanced sulfide-based solid-state separators utilising the novel Intellectual Property (IP) licensed from Oxford University Innovation Limited (Oxford University). This result enables Gelion to proceed to the next stage of optimization for this separator which has the potential to not just increase the cycle life of existing lithium metal batteries but also for Gelion's high energy density GEN 3 lithium-sulfur (LiS) cells. Solid Electrolyte Separators (SES) are recognized as a key enabler to long duration high energy lithium metal batteries due to their potential to increase safety, cycle life and energy density of battery technologies in which they are employed. Their implementation has been hampered due to challenges in their processability and manufacture and this successful fabrication is an important step to solving these challenges. Significantly, these advancements: introduces another potential revenue stream by way of licensing to Lithium nickel manganese cobalt oxides (Li-NMC) battery manufacturers, when optimized to enable scaled production of the SES; facilitate the incorporation of SES into liquid-based Li-metal (e.g., Li-NMC and Lithium-air (Li-air) battery technologies), Li-S and solid-state Li-ion/Li-S cell assembly; relax the operational requirements (i.e. external pressure and temperature) of solid-state batteries that comprise this SES technology making this technology more viable for commercialization.
공시 • Aug 15Gelion Announces an Update on Its Next Generation Lithium-Sulfur (Li-S) Battery DevelopmentGelion announces an update on its Next Generation ("GEN 3") Lithium-Sulfur (Li-S) battery development. Building on the announcements made in March and April 2024, Gelion has now successfully developed 1 Ah semi-solid-state Li-S pouch cells with its GEN 3 cell technology. The Company's modelling from these 1 Ah GEN 3 cells predicts that a 10 Ah cell can be expected to deliver energy density greater than 400 Wh/kg. Gelion's GEN 3 technology uses a unique sulfur cathode material (fabricated using a unique, low energy process carried out at room temperature), water-based cathode processing (non-toxic), and a proprietary liquid electrolyte. The GEN 3 platform is based on a specially engineered formulation of commercially available materials in combination with abundant sulfur to demonstrate high energy density and operational temperature capability. Benefits of Gelion's GEN 3 over GEN 2 · Higher energy density -Energy density expected to be greater than 400 Wh/kg, when using a 10 Ah pouch cell. · Increased longevity/cycle life: GEN 3 employs new sulfur chemistry to increase stability, addressing the major degradation factors associated with conventional Li-S technology. · Increased sulfur utilisation:GEN 3 demonstrates the full theoretical capacity of sulfur, i.e. a much higher sulfur utilisation than found in conventional Li-S approaches. · Simplified supply chain:The innovative cathode combines specially engineered, but commercially available, materials with abundant sulfur that are produced using a low-energy, room-temperature process, eliminating the need for pre-processing, streamlining the battery production process and enabling localised manufacturing. Environmental and economic benefits:The water-based, atmospheric cathode production process eliminates the need for toxic solvents, leading to significant cost savings and enhanced manufacturability. GEN 3 uses the extensive network of Li-S technologies developed within Gelion and contained in the patents acquired from Johnson Matthey in March 2023. The GEN 3 semi-solid-state Li-S cell builds on the GEN 2 Li-S cell (developed by OXIS Energy) and addresses the key barriers to commercialisation faced by typical lithium-sulfur developers. Sulfur, being an abundant material, offers a future not limited by geographically concentrated and controlled battery metals. However, other lithium-sulfur developers often require the use of hard to obtain, rare or costly materials and have to rely on high-energy and time-consuming processes. Gelion's GEN 3 platform and production process circumvents these barriers. The GEN 3 cell is designed to tolerate higher operational temperatures by using Gelion's proprietary 'SulfurLock electrolyte' - which is free from temperature-sensitive additives typically found in Li-S batteries. Additionally, this electrolyte has been engineered to prevent sulfur redistribution during operation, increasing cycle life, addressing the primary cause of degradation in Li-S batteries. Gelion's cathode uses a proprietary sulfur active cathode material, fabricated using a unique, low energy process performed at room temperature. By using this process, Gelion can eliminate the need to pre-fabricate the cathode-active material. This has the potential to simplify the battery supply chain and make the production of sulfur batteries not only easier, but also more cost efficient than is the case for lithium-ion batteries, enhancing the manufacturing options geographically.
공시 • Apr 04Gelion Announces Update on Its Next Generation Lithium-Sulfur (Li-S) Battery DevelopmentGelion announced an update on its Next Generation Lithium-Sulfur (Li-S) battery development. Gelion has achieved a high energy density milestone by fabricating a 395 Wh/kg lithium-sulfur 9.5 Ah pouch cell (commercial cell format). This result represents a c. 60% increase in the energy density (lower weight) compared with current lithium-ion batteries (approximately 250 Wh/kg). Further to the announcement on 19 March 2024, Gelion had produced 1.0 Ah cells using the OXIS Gen2 cell technology that achieved energy density of 245 Wh/kg. The achievement of 395 Wh/kg aligns with the independent energy density modelling projections for a larger cell format. Achievement of this milestone represents a key technology proof point for Gelion. By re-establishing this performance, building on the OXIS Gen 2 technology and IP acquired from Johnson Matthey. The Company has set a new benchmark against which to compare upcoming 'Next Generation' cell which targets further performance improvements upon this announced result. On 19 March 2024, Gelion identified that testing of Next Generation cell technology is exhibiting expected solid-to-solid conversion (see Glossary)behaviourtoward enhanced stability and longevity. will continue to progress these developments in addition to the silicon-sulfur cell technology in cooperation with Ionblox. Gelion's ambition for its next generation platform is to unlock the potential of sulfur batteries for a wide range of global applications including electric vertical-takeoff-and-landing (eVTOL) aircraft, drones, electric vehicles (EV), and stationary energy storage (ESS), as high Wh/kg translates to lighter batteries and opens many advantages for these markets. Sulfur being an abundant material offers a future not limited by geographically concentrated and controlled battery metals which significantly improves battery lifecycle sustainability. In May 2023, Gelion updated on the progress made using the battery technology package acquired from Johnson Matthey (containing, in addition to its own IP, the Li-S IP and know-how from OXIS Energy). Gelion has worked over the past nine months to benchmark, improve on, and define a next generation approach to Li-S battery development. Li-S batteries are an advanced alternative to Li-ion batteries that can achieve much greater gravimetric energy densities (measured as amount of energy per battery weight). This is critical to drive down the weight in mobile applications such as EV's, e-aviation, and drones, reducing auxiliary component cost and lessening their upfront environmental impact. They do not contain rare metals in the cathode and can be scaled to meet the demands of global electrification. The technology shows promise to be safer (lower risk of fires) than current batteries.
공시 • Mar 21Gelion plc to Report First Half, 2024 Results on Mar 27, 2024Gelion plc announced that they will report first half, 2024 results on Mar 27, 2024
공시 • Feb 05Gelion plc Announces Board AppointmentsGelion plc announced the appointment of Dr. Louis Adriaenssens as Chief Technological Officer (CTO) of the company and Dr. Adrien Amigues as President of Gelion UK and Europe, with immediate effect. Louis joins Gelion with exceptional experience in specialist battery innovation, manufacture and commercialisation, having most recently worked in Nevada as the Supervisor of Chemistry for Panasonic at the Tesla Gigafactory, where he and his team looked after the processes associated with the production of approximately 5 million battery cells per day. A contributing author/inventor of leading scientific articles and significant patents across the fields of materials chemistry, electrochemistry and synthesis, Louis will lead a technical team of over 20 PhD or graduate level engineers and scientists, across Australia and the UK stewarding a portfolio including 470 patents in 76 patent families (including new patents under application). The appointment of a CTO comes at a pivotal time in the development of Gelion's Lithium-Sulfur (LiS) and Zinc-based (Zn) battery technologies and operational expansion into the UK and Europe. This follows the acquisition of OXLiD Ltd. in November 2023, whose founder Dr. Adrien Amigues will now take up the role of President of Gelion UK and Europe. Gelion founder and Principal Technology Adviser, Professor Thomas Maschmeyer, will continue with all his leadership contributions and governance roles within the Group.
공시 • Nov 29+ 1 more updateGelion plc to Report Fiscal Year 2023 Results on Dec 12, 2023Gelion plc announced that they will report fiscal year 2023 results on Dec 12, 2023
공시 • Nov 25Gelion plc has completed a Follow-on Equity Offering in the amount of £4.491206 million.Gelion plc has completed a Follow-on Equity Offering in the amount of £4.491206 million. Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 1,875,000 Price\Range: £0.24 Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 16,838,358 Price\Range: £0.24 Transaction Features: Regulation S
공시 • Nov 11Gelion plc has filed a Follow-on Equity Offering in the amount of €4 million.Gelion plc has filed a Follow-on Equity Offering in the amount of €4 million. Security Name: Ordinary Shares Security Type: Common Stock Securities Offered: 16,666,667 Price\Range: €0.24
공시 • Nov 10Gelion plc (AIM:GELN) signed an agreement to acquire Oxlid Ltd for £4.2 million.Gelion plc (AIM:GELN) signed an agreement to acquire Oxlid Ltd for Approximately £4.2 million on November 9, 2023.Cavendish Capital Markets Limited acted as financial advisor to Gelion plc (AIM:GELN).
공시 • Aug 15Gelion plc Provides Revenue Guidance for Year Ended 30 June 2023Gelion plc provided revenue guidance for year ended 30 June 2023. For the year the company expected to be ahead of current guidance: Revenues for the year are expected to be £2.0 million ahead of current guidance of £1.7 million.
공시 • Jul 06Gelion plc Updates on the Strategic Evaluation of Its Zinc Battery Solution and on Advances Made on Its Lithium Sulfur TechnologyGelion plc provided an update on the strategic evaluation of its Zinc battery solution and on advances made on its Lithium Sulfur technology. The Company's match to market analysis to define the operational parameters of Gelion's zinc bromide ('ZnBr 2') battery highlighted the need to balance three key priorities - safety, energy density and cost and consistent with this, the 12-month ZnBr 2 research programme ("R&D Programme") was launched earlier this year. Strong early progress has been made on the anode side, with significantly improved zinc plating behaviour, achieving improved system behaviour (reducing and potentially eliminating the need to fully discharge the battery periodically for maintenance), however, the R&D Programme also identified potential safety concerns on the cathode side, arising from efficacy of the approach of sequestering bromine in the battery. Gelion continued R&D for the cathode, and it has now identified and is migrating to a zinc solution that avoids the potential safety concerns arising from sequestering bromine. Successful validation is expected to result in a technology with safety, energy density and cost ambitions achieved at the same time. Gelion expects to validate the potential of this technology over the next six months and report back in early 2024, keeping in line with the timelines communicated for the current R&D Programme. Management believes that this solution is highly desirable to Gelion's end market and will accelerate Gelion's ability to scale-up into commercial production. Lithium Sulfur: Management is encouraged by the progress being made toward realising the potential of intellectual property packages acquired from Johnson Matthey when combined with Gelion's existing technologies. Gelion therefore intends to increase the testing capacity of its research and development facilities in this regard by 50%. Based in Sydney, the site will have the capability to increase Gelion's prototyping toward cell development and is due to be operational in September 2023.