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Sulfide Solid Electrolytes for Lithium Battery Applications

机译:锂电池应用中的硫化物固体电解质

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The use of solid electrolytes is a promising direction to improve the energy density of lithium-ion batteries. However, the low ionic conductivity of many solid electrolytes currently hinders the performance of solid-state batteries. Sulfide solid electrolytes can be processed in a number of forms (glass, glass-ceramic, and crystalline) and have a wide range of available chemistries. Crystalline sulfide materials demonstrate ionic conductivity on par with those of liquid electrolytes through the utilization of near ideal conduction pathways. Low-temperature processing is also possible for these materials due to their favorable mechanical properties. The main drawback of sulfide solid electrolytes remains their electrochemical stability, but this can be addressed through compositional tuning or the use of artificial solid electrolyte interphase (SEI). Implementation of sulfide solid electrolytes, with proper treatment for stability, can lead to substantial improvements in solid-state battery performance leading to significant advancement in electric vehicle technology.
机译:固体电解质的使用是改善锂离子电池能量密度的有前途的方向。但是,许多固体电解质的低离子电导率目前阻碍了固态电池的性能。硫化物固体电解质可以多种形式(玻璃,玻璃陶瓷和晶体)进行加工,并具有广泛的可用化学性质。通过利用接近理想的传导途径,结晶的硫化物材料具有与液体电解质相同的离子导电性。这些材料由于其良好的机械性能,还可以进行低温处理。硫化物固体电解质的主要缺点仍然是它们的电化学稳定性,但这可以通过组成调整或使用人工固体电解质中间相(SEI)来解决。通过对硫化物固体电解质进行适当处理以实现稳定性,可以导致固态电池性能的显着改善,从而导致电动汽车技术的显着进步。

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