阳极
阳离子聚合
共价键
离子键合
材料科学
溶解
动力学
电化学
磷
化学工程
离子液体
无机化学
化学
离子
有机化学
电极
高分子化学
催化作用
物理化学
工程类
物理
量子力学
冶金
作者
Yuliang Cao,Shaojie Zhang,Baoshan Zhang,Chengyu Han,Yiming Zhang,Xiaoyi Wang,Shuo Liu,Haochen Gong,Xinyi Liu,Siyu Fang,Fusheng Pan,Jie Sun
标识
DOI:10.1002/adma.202208514
摘要
A phosphorus anode is a promising option for energy-storage applications because of its high theoretical specific capacity and safe lithiation potential. However, the multiphase phosphorus lithiation/delithiation reactions and soluble reaction intermediates cause sluggish reaction kinetics and loss of active materials. Herein, a novel local electric field (LEF) strategy is proposed to inhibit the intermediates dissolution and promote the reaction kinetics by optimizing ionic covalent organic frameworks (iCOFs). Among them, the LEF induced by the cationic covalent organic framework effectively enhances the electrochemical performance of the phosphorus anode. The strong electrostatic interaction between the polyphosphides and cationic covalent organic framework confines the dissolution of active materials and tailors the electronic structure of polyphosphides to accelerate the reaction kinetics. The cationic covalent-organic-framework-assisted phosphorus anode provides a high capacity of 1227.8 mAh g-1 at 10.4 A g-1 (8.6 C) and a high-capacity retention of 87% after 500 cycles at 1.3 A g-1 . This work not only broadens the application of iCOFs for phosphorus anode but also inspires the great potential of the local electric field in battery technology.
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