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Investigation of the Degradation of LiPF 6 - in Polar Solvents through Deep Potential Molecular Dynamics.

Da ZhuLi ShengTaiping HuSian ChenMengchao ShiHaiming HuaKai YangJianlong WangYaping TangXiangming HeHong Xu
Published in: The journal of physical chemistry letters (2024)
The nonaqueous electrolyte based on lithium hexafluorophosphate (LiPF 6 ) is the dominant liquid electrolyte in lithium-ion batteries (LIBs). However, trace protic impurities, including H 3 O + , alcohols, and hydrofluoric acid (HF), can trigger a series of side reactions that lead to rapid capacity fading in high energy density LIBs. It is worth noting that this degradation process is highly dependent on the polarity of the solvents. In this work, a deep potential (DP) model is trained with a certain commercial electrolyte formula through a machine learning method. H 3 O + is anchored with polar solvents, making it difficult to approach the PF 6 - , and suppressing the degradation process quickly at room temperature. Control experiments and simulations at different temperatures or concentrations are also performed to verify it. This work proposes a precise model to describe the solvation structure quantitatively and offers a new perspective on the degradation mechanism of PF 6 - in polar solvents.
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