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Updated: Sep 20, 2026

Solid-state Graft Copolymer Electrolytes for Lithium Battery Applications
Published on: August 12, 2013
Dipole-dipole interaction facilitates anion-rich solvation structures in polymer electrolytes for solid-state lithium
Zong-Yao Shuang1, Chen-Zi Zhao1,2,3, Xue-Yan Huang1
1Beijing Key Laboratory of Complex Solid-State Batteries, Department of Chemical Engineering, Tsinghua University, Beijing 100084, P. R. China.
Abstract:
Polymer electrolytes are vital for safe and high-energy-density lithium metal batteries but face challenges from interfacial instability and Li dendrites. Here, we report a molecular design exploiting dipole-dipole interactions to tailor Li+ solvation structures and interfacial chemistry. Incorporating pentafluorophenyl acrylate into the polymer backbone enhances dipole interactions with 1,2-dimethoxyethane solvent, modulating the solvation structure and promoting anion entry into the primary coordination sphere. The anion-rich environment facilitates a durable, LiF-dominated solid electrolyte interphase, effectively suppressing dendrites and improving interfacial stability. The resulting electrolyte enables stable lithium plating/stripping over 2000 hours in symmetric cells and extends Li||LiNi0.9Co0.05Mn0.05O2 (NCM90) full cell cycling to 1000 cycles at 1.0 C. An anode-free Cu||NCM90 pouch cell delivers a high-energy-density of 579 Wh kg-1. This study underscores the critical role of dipole-mediated solvation structuring in polymer electrolytes and offers a generalizable approach toward high-performance, energy-dense solid-state batteries.
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