电介质
材料科学
极化(电化学)
电子
流离失所(心理学)
光电子学
接口(物质)
纤维
高-κ电介质
化学物理
凝聚态物理
复合材料
化学
物理
物理化学
心理学
量子力学
毛细管数
毛细管作用
心理治疗师
作者
Tao Zhang,Xiaoqing Zhu,Jiyang Xiong,Zhixin Xue,Yunteng Cao,Keith C. Gordon,Guiyin Xu,Meifang Zhu
标识
DOI:10.1038/s41467-025-60256-9
摘要
The electrostatic effects of separators under the internal electric field are often overlooked, leading to the unreliability of traditional theoretical models. Here we introduce the dielectric constant as a descriptor and develop a high dielectric constant fiber separator primarily composed of phosphorylated cellulose. Under the internal electric field, the intense electron displacement polarization within the high dielectric constant separator enhances the charge transfer kinetics and optimizes the solvation structure, thus mitigating the formation of amorphous organic oligomers at the solid-electrolyte interphase. Furthermore, the separator induces the formation of LiF, thereby forming a robust and low-resistance solid-electrolyte interphase. The separator exhibits high ionic conductivity (0.76 mS cm-1 at 25 °C) and Li+ transference number (0.68). Consequently, the Li||LiFePO4 pouch cell with the prepared separator achieve high specific energy exceeding 350 Wh kg-1 (relative to the mass of pouch cells) under practical quantities of active materials and electrolyte.
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