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◆ Nature Communications2025-10-21· Interphase

The role of phosphorus in the solid electrolyte interphase of argyrodite solid electrolytes

Matthew Burton, Ben Jagger, Yi Liang, Joshua S. Gibson, Jack Aspinall, Zhongdui Long, Jack E. N. Swallow, Robert S. Weatherup, Mauro Pasta

原始摘要(英文原文)· Original abstract
Abstract The solid electrolyte interphase that forms on Li 6 PS 5 Cl argyrodite solid electrolytes has been reported to continually grow through a diffusion-controlled process, yet this process is not fully understood. Here, we use a combination of electrochemical and X-ray photoelectron spectroscopy techniques to elucidate the role of phosphorus in this growth mechanism. We uncover how Li 6 PS 5 Cl can decompose at potentials well above the full reduction to Li 3 P, forming partially lithiated phosphorus species, Li x P. We provide evidence of a gradient of Li x P species throughout the solid electrolyte interphase and propose a growth mechanism in which the rate-determining step is the diffusion of lithium through Li x P. We predict continuous solid electrolyte interphase growth as long as metallic lithium is present and a Li x P percolation pathway exists, highlighting the importance of understanding and engineering solid electrolyte interphase composition and nanostructure in solid-state batteries. We believe that this growth mechanism would apply to any solid electrolyte interphase that can contain partially lithiated phosphorus, or potentially any lithium alloy.
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The role of phosphorus in the solid electrolyte interphase of argyrodite solid electrolytes — 科研速览 Science Skim