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研究高电位锂电池中电极|多相聚合物电解质界面的不均匀性影响。

Investigating the effect of heterogeneities across the electrode|multiphase polymer electrolyte interfaces in high-potential lithium batteries.

作者信息

Min Jungki, Bak Seong-Min, Zhang Yuxin, Yuan Mingyu, Pietra Nicholas F, Russell Joshua A, Deng Zhifei, Xia Dawei, Tao Lei, Du Yonghua, Xiong Hui, Li Ling, Madsen Louis A, Lin Feng

机构信息

Department of Chemistry, Virginia Tech, Blacksburg, VA, USA.

National Synchrotron Light Source II, Brookhaven National Laboratory, Upton, NY, USA.

出版信息

Nat Nanotechnol. 2025 Apr 1. doi: 10.1038/s41565-025-01885-5.

Abstract

Polymer electrolytes hold great promise for safe and high-energy batteries comprising solid or semi-solid electrolytes. Multiphase polymer electrolytes, consisting of mobile and rigid phases, exhibit fast ion conduction and desired mechanical properties. However, fundamental challenges exist in understanding and regulating interactions at the electrode|electrolyte interface, especially when using high-potential layered oxide active materials at the positive electrode. Here we demonstrate that depletion of the mobile conductive phase at the interface contributes to battery performance degradation. Molecular ionic composite electrolytes, composed of a rigid-rod ionic polymer with nanometric mobile cations and anions, serve as a multiphase platform to investigate the evolution of ion conductive domains at the interface. Chemical and structural characterizations enable the visualization of concentration heterogeneity and spatially resolve the interfacial chemical states over a statistically significant field of view for buried interfaces. We report that concentration and chemical heterogeneities prevail at electrode|electrolyte interfaces, leading to phase separation in polymer electrolytes. Understanding the hidden roles of interfacial chemomechanics in polymer electrolytes enables us to design an interphase tailoring strategy based on electrolyte additives to mitigate the interfacial heterogeneity and improve battery performance.

摘要

聚合物电解质对于包含固体或半固体电解质的安全且高能量电池具有巨大潜力。由移动相和刚性相组成的多相聚合物电解质表现出快速的离子传导和所需的机械性能。然而,在理解和调节电极|电解质界面处的相互作用方面存在根本性挑战,特别是在正极使用高电位层状氧化物活性材料时。在此,我们证明界面处移动导电相的耗尽会导致电池性能下降。由具有纳米级移动阳离子和阴离子的刚性棒状离子聚合物组成的分子离子复合电解质,作为一个多相平台来研究界面处离子导电域的演变。化学和结构表征能够实现浓度异质性的可视化,并在具有统计学意义的埋入界面视野范围内空间分辨界面化学状态。我们报告称,电极|电解质界面处普遍存在浓度和化学异质性,导致聚合物电解质中出现相分离。理解聚合物电解质中界面化学力学的隐藏作用使我们能够设计一种基于电解质添加剂的界面剪裁策略,以减轻界面异质性并提高电池性能。

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