
Lithium Selenide is a high-performance inorganic compound essential for next-generation energy storage and optoelectronics. Zyntex provides research and industrial-grade Li2Se.
In the field of solid-state physics, the search for high-capacity energy storage materials is a top priority. Lithium Selenide is specifically selected because it offers a significantly higher theoretical volumetric capacity compared to traditional oxide-based cathodes. For instance, it acts as a critical pre-lithiation agent to offset capacity loss during the formation of the solid electrolyte interphase (SEI). Consequently, it enhances the overall cycle life and stability of high-energy-density cells. As a result, Zyntex ensures that our Li2Se is processed under strict inert conditions to prevent moisture-induced degradation.
Moreover, the semiconductor-grade Lithium Selenide provided by Zyntex is an essential precursor for synthesizing chalcogenide glasses and quantum dots. This application allows for the production of advanced infrared optics and high-efficiency photovoltaic cells. Undoubtedly, its unique electronic properties make it a “performance-reagent” of choice for vacuum evaporation and chemical vapor deposition (CVD) processes. At the same time, our manufacturing protocols prioritize ultra-high purity levels to eliminate trace metallic impurities that could compromise device efficiency. In short, our product serves as a vital building block for innovators in the renewable energy and telecommunications industries.
Recently, industrial demand has surged for lithium-based materials that support sustainable green technologies. Because of this, Zyntex provides customized particle sizes ranging from micro-scale powders to specialized sputtering targets. Ultimately, by choosing Zyntex as your supplier, you secure a robust supply chain that meets the rigorous demands of modern material science. To conclude, our commitment to chemical excellence ensures that your research and production workflows deliver state-of-the-art technological performance.
This high-performance compound is specifically vital in the following four technological sectors:
A high-capacity cathode material for Li-Se batteries; thus enabling the production of longer-lasting electric vehicle batteries.
Used as a p-type semiconductor layer in thin-film solar panels; consequently improving light-to-electricity conversion rates.
Essential for fabricating chalcogenide glasses and optical fibers; undoubtedly vital for high-speed telecommunications.
Applied in vacuum deposition for high-purity thin films, supporting the latest advancements in semiconductor manufacturing.
| Parameter | Standard Value |
|---|---|
| Product Name | Lithium Selenide (Li2Se) |
| Purity | 99.5% – 99.999% (Metals Basis) |
| Melting Point | 1302°C |
| CAS Number | 12136-60-6 |
⚠️ Handling Note: Lithium Selenide is highly moisture-sensitive and toxic. Therefore, it must be handled under an inert atmosphere (Argon) to avoid the release of toxic hydrogen selenide gas.