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Atomfair Lithium sulfide Li2S HLi2S+
Description Lithium Sulfide (Li2S) is an inorganic compound composed of lithium and sulfur, widely recognized for its critical role in advanced energy storage applications. With the molecular formula HLi2S+and CAS number 12136-58-2 , this high-purity material is supplied as an anhydrous powder, ensuring optimal performance in sensitive electrochemical environments. Lithium Sulfide exhibits excellent ionic conductivity and stability, making it a preferred choice for solid-state battery research and development. Our product is rigorously tested for purity, moisture content, and particle size distribution to meet the stringent demands of researchers and industrial applications. Available in customizable quantities, this compound is packaged under…
Description
Description
Lithium Sulfide (Li2S) is an inorganic compound composed of lithium and sulfur, widely recognized for its critical role in advanced energy storage applications. With the molecular formula HLi2S+ and CAS number 12136-58-2, this high-purity material is supplied as an anhydrous powder, ensuring optimal performance in sensitive electrochemical environments. Lithium Sulfide exhibits excellent ionic conductivity and stability, making it a preferred choice for solid-state battery research and development. Our product is rigorously tested for purity, moisture content, and particle size distribution to meet the stringent demands of researchers and industrial applications. Available in customizable quantities, this compound is packaged under inert conditions to prevent degradation and ensure long-term shelf stability.
- CAS No: 12136-58-2
- Molecular Formula: HLi2S+
- Molecular Weight: 47.0
- Exact Mass: 47.01190307
- Monoisotopic Mass: 47.01190307
- Charge: 1
- IUPAC Name: dilithium;sulfanide
- SMILES: [Li+].[Li+].[SH-]
- Synonyms: Lithium sulphide, anhydrous, Li2S compound, EINECS 235-228-1, SW6C51V9JZ, DTXSID7065251
Application
Lithium Sulfide is primarily used in the development of solid-state batteries, where it serves as a key component in sulfide-based solid electrolytes due to its high ionic conductivity and compatibility with lithium metal anodes. It is also employed in the synthesis of cathode materials for next-generation lithium-sulfur (Li-S) batteries, enabling higher energy densities and improved cycle life. Researchers utilize Li2S to study interfacial stability and electrochemical performance in energy storage systems. Additionally, it finds applications in specialty glass and ceramic formulations where sulfur incorporation is required.
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