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Ares Energetics
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EV Batteries and Pharmaceuticals
Lithium Carbonate
Lithium Carbonate plays a dual role in advancing industries:
- Energy Sector: A critical raw material for lithium-ion battery cathodes, enhancing energy storage for electric vehicles and renewable energy.
- Pharmaceuticals: Commonly used as a mood stabilizer to treat bipolar disorders and other neurological conditions.
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Used in High-Performance Lithium-Ion Batteries.
Lithium Hydroxide
Lithium Hydroxide plays a vital role in advanced battery chemistries, particularly in NMC (Nickel Manganese Cobalt) and NCA (Nickel Cobalt Aluminum) configurations. It improves energy storage capabilities, thermal stability, and the overall lifecycle of batteries. This makes it indispensable for electric vehicles and large-scale energy storage systems, ensuring efficiency and long-term performance.
Used in LFP Battery Cathode Materials
Phosphoric Acid
Phosphoric Acid is a critical component in producing Lithium Iron Phosphate (LFP) battery cathodes. Its addition ensures safety, stability, and durability, reducing risks like thermal runaway. These qualities make it an ideal choice for electric buses, two-wheelers, and renewable energy systems that require robust and reliable energy storage solutions.
Precursor for Lithium Iron Phosphate (LFP)
Iron Sulphate
Iron Sulphate serves as a vital precursor in synthesizing Lithium Iron Phosphate (LFP) cathode materials. Its eco-friendly and cost-effective properties support the production of efficient batteries for renewable energy grids, electric vehicles, and other sustainable energy applications, contributing to greener technological advancements.
Used in Cathode Material Processing
Iron Chloride
Iron Chloride (FeCl₃) serves as an important chemical in battery material processing. It plays a role in the peparation of cathode precursors like Lithium Iron Phosphate (LiFePO4), contributing to the production of durable, efficient, and sustainable battery systems for EVs.
Safe and Reliable Cathode Material
Lithium Iron Phosphate
Lithium Iron Phosphate (LFP) is a preferred cathode material due to its excellent safety profile, long operational lifespan, and high thermal stability. Widely used in electric vehicles, public transportation systems, and grid-scale energy storage, LFP provides a cost-effective and sustainable alternative for powering modern technologies.





