Altech Batteries Ltd Stock Market Press Releases and Company Profile

View in Other Languages Altech Chemicals Ltd ASX:ATC تحقق أنود أعلى كثافة للطاقة بنسبة 30٪ في LiB Altech Chemicals Ltd (ASX:ATC) 30% Higher Energy Density Anode Achieved in LiB Altech Chemicals Ltd (ASX:ATC) 锂电池的能量密度提高了 30% Altech Chemicals Ltd (ASX:ATC) Anode mit 30 % höherer Energiedichte in LiB . erreicht Altech Chemicals Ltd(ASX:ATC) LiBで達成された30%高いエネルギー密度のアノード Altech Chemicals Ltd (ASX:ATC) 鋰電池的能量密度提高了 30% Altech Chemicals Ltd (ASX:ATC) Ânodo de densidade de energia 30% superior alcançada em LiB Altech Chemicals Ltd (ASX:ATC) Une anode à densité d'énergie supérieure de 30% obtenue en LiB Altech Chemicals Ltd (ASX:ATC) Ánodo de densidad de energía 30% más alta logrado en LiB Altech Chemicals Ltd (ASX:ATC) LiB에서 30% 더 높은 에너지 밀도 양극 달성 Altech Chemicals Ltd (ASX:ATC) 30% Lebih Tinggi Energi Densitas Anoda Dicapai di LiB Altech Chemicals Ltd (ASX:ATC) แอโนดความหนาแน่นพลังงานสูงขึ้น 30% ใน LiB Altech Chemicals Ltd (ASX:ATC) Получен анод с повышенной энергетической плотностью на 30% в LiB 
30% Higher Energy Density Anode Achieved in LiB
30% Higher Energy Density Anode Achieved in LiB

Perth, Nov 25, 2021 AEST (ABN Newswire) - Altech Chemicals Limited (googlechartASX:ATC) (googlechartA3Y:FRA) is delighted to announce a significant breakthrough in lithium-ion battery technology by its research and development laboratory in Perth, Western Australia.

After almost 12 months of challenging work, Altech has finally "cracked the silicon barrier" and successfully produced and tested a series of lithium-ion battery anode materials that have ~30% higher retention capacity compared to conventional lithium-ion battery anode materials. To achieve its breakthrough, Altech successfully combined silicon particles that had been treated with its innovative proprietary technology, with regular battery grade graphite to produce a lithium-ion battery electrode containing a composite graphite / silicon anode. When energised, these materials held 30% more capacity compared to a conventional graphite only anode material. The materials were then subjected to a series of tests over a period of time, including charge and discharge cycling. From laboratory testing, the previously unresolved impediments for using silicon in lithium-ion battery anodes which are: silicon particle swelling; prohibitive first-cycle-capacity-loss of up to 50%; and rapid battery degradation, appeared to have been substantially overcome during Altech's testing of the composite graphite/silicon batteries.

The lithium-ion battery industry has declared that the required step change to increase lithium-ion battery energy density and reduced costs is to introduce silicon in battery anodes, as silicon has ~ ten times the energy retention capacity compared to graphite. Silicon metal is identified as the most promising anode material for the next generation of lithium-ion batteries. However, until now silicon was unable to be used in commercial lithium-ion batteries due to two critical drawbacks. Firstly, silicon particles expand by up to 300% in volume during battery charge, causing particle swelling, fracturing and ultimately battery failure. The second challenge is that silicon deactivates a high percentage of the lithium ions in a battery. Lithium ions are rendered inactive by the silicon, immediately reducing battery performance and life. Industry has been in a race to crack the silicon barrier.

Altech's potentially game changing technology has demonstrated that silicon particles can be modified to resolve the capacity fading caused by both the swelling and first-cycle-capacity-loss problems. After almost 12 months of extensive research, development and trials at its laboratory in Perth, Western Australia, the Altech Research & Development team headed by Dr Jingyuan Liu has finally cracked the silicon problem.

In a series of tests, the Altech lithium-ion battery anode material averaged energy retention capacity of ~430 mAh/g compared to a normal lithium-ion battery anode at around 330 mAh/g, being 30% higher. Importantly, the Altech batteries demonstrated good stability and cycling performance.

Managing director, Iggy Tan said that "this major achievement is not just a significant breakthrough for Altech, but also for the lithium-ion battery industry generally. Especially so given the 2020 public statement by US electric vehicle manufacturer Tesla, which said that its aim is to increase the amount of silicon in its batteries to achieve step-change improvements in energy density and battery life. A 30% higher energy capacity lithium-ion battery would translate not just to significant cost benefits, but also to potentially increased range for electric vehicles. Phase 2 of Altech's planned research and development program will see the Company strive in improve on the 30% energy increase, and could include the assembly of a pilot plant for production of the composite material in greater volume. In terms of potential commercialisation of its technology, the Company's 75% owned subsidiary Altech Industries Germany GmbH has already commenced a pre-feasibility study for construction of a 10,000tpa battery materials plant in Saxony, Germany to service the burgeoning European lithium-ion battery market".

An interview with managing director Iggy Tan, explaining this exciting development for Altech is available for viewing on the Altech Chemicals Website


About Altech Batteries Ltd

Altech Chemical Ltd ASX:ATCAltech Batteries Limited (ASX:ATC) (FRA:A3Y) is a specialty battery technology company that has a joint venture agreement with world leading German battery institute Fraunhofer IKTS ("Fraunhofer") to commercialise the revolutionary CERENERGY(R) Sodium Alumina Solid State (SAS) Battery. CERENERGY(R) batteries are the game-changing alternative to lithium-ion batteries. CERENERGY(R) batteries are fire and explosion-proof; have a life span of more than 15 years and operate in extreme cold and desert climates. The battery technology uses table salt and is lithium-free; cobalt-free; graphite-free; and copper-free, eliminating exposure to critical metal price rises and supply chain concerns. 

The joint venture is commercialising its CERENERGY(R) battery, with plans to construct a 100MWh production facility on Altech's land in Saxony, Germany. The facility intends to produce CERENERGY(R) battery modules to provide grid storage solutions to the market.

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Contact

Corporate
Iggy Tan
Managing Director
Altech Batteries Limited
Tel: +61-8-6168-1555
Email: info@altechgroup.com

Martin Stein
Chief Financial Officer
Altech Batteries Limited
Tel: +61-8-6168-1555
Email: info@altechgroup.com



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