Multifunctional Zwitterionic Self‐Healing Polymer Electrolytes for Anode‐Free Lithium‐Metal Batteries: a Computational Perspective

电解质 材料科学 阳极 X射线光电子能谱 磺酸盐 锂(药物) 化学工程 密度泛函理论 成核 化学 电极 有机化学 物理化学 计算化学 医学 工程类 冶金 内分泌学
作者
Liang‐Ting Wu,Yong-Xiang Zhan,Yu‐Cheng Chiu,Bing−Joe Hwang,Jyh‐Chiang Jiang
出处
期刊:Small [Wiley]
卷期号:21 (30): e2503382-e2503382 被引量:4
标识
DOI:10.1002/smll.202503382
摘要

The practical application of anode-free lithium-metal batteries (AFLMBs) is limited by their poor cycling performance and unstable solid electrolyte interphase (SEI). Self-healing solid polymer electrolytes (SHSPEs) offer excellent flexibility and healing capabilities, which are expected to mitigate dendrite growth and improve AFLMB cycling performance. In this study, a novel zwitterionic SHSPE, P(SBMA-co-BA):LiTFSI, is proposed, and its suitability for AFLMBs is evaluated through density functional theory (DFT) and ab initio molecular dynamics (AIMD) simulations. The sulfonate (RSO3 -) group promotes Li+ ion transport, and the electrostatic interaction between RSO3 - and NR4 + groups drives the electrolyte's self-healing after material damage. Electrolyte degradation on the Cu current collector during Li-nucleation and on the Li metal surface during extensive Li metal plating is further examined. The SEI components are identified using atomic charge distribution analysis, which is typically compared with X-ray photoelectron spectroscopy (XPS) data. The resulting organic/inorganic hybrid SEI demonstrates excellent flexibility and stability, and the long-chain sulfonate-containing compound facilitates rapid Li-ion conduction and uniform Li metal plating. The multifunctional zwitterionic SHSPE, P(SBMA-co-BA):LiTFSI, thus shows significant potential to enhance the cycling performance of AFLMBs, paving the way for their practical application.
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