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用于电化学储能的溶液可加工的固有微孔氧化还原活性聚合物。

Solution-Processable Redox-Active Polymers of Intrinsic Microporosity for Electrochemical Energy Storage.

作者信息

Wang Anqi, Tan Rui, Breakwell Charlotte, Wei Xiaochu, Fan Zhiyu, Ye Chunchun, Malpass-Evans Richard, Liu Tao, Zwijnenburg Martijn A, Jelfs Kim E, McKeown Neil B, Chen Jun, Song Qilei

机构信息

Department of Chemical Engineering, Imperial College London, London SW7 2AZ, U.K.

Department of Chemistry, Molecular Sciences Research Hub, Imperial College London, London W12 0BZ, U.K.

出版信息

J Am Chem Soc. 2022 Sep 21;144(37):17198-17208. doi: 10.1021/jacs.2c07575. Epub 2022 Sep 8.

Abstract

Redox-active organic materials have emerged as promising alternatives to conventional inorganic electrode materials in electrochemical devices for energy storage. However, the deployment of redox-active organic materials in practical lithium-ion battery devices is hindered by their undesired solubility in electrolyte solvents, sluggish charge transfer and mass transport, as well as processing complexity. Here, we report a new molecular engineering approach to prepare redox-active polymers of intrinsic microporosity (PIMs) that possess an open network of subnanometer pores and abundant accessible carbonyl-based redox sites for fast lithium-ion transport and storage. Redox-active PIMs can be solution-processed into thin films and polymer-carbon composites with a homogeneously dispersed microstructure while remaining insoluble in electrolyte solvents. Solution-processed redox-active PIM electrodes demonstrate improved cycling performance in lithium-ion batteries with no apparent capacity decay. Redox-active PIMs with combined properties of intrinsic microporosity, reversible redox activity, and solution processability may have broad utility in a variety of electrochemical devices for energy storage, sensors, and electronic applications.

摘要

氧化还原活性有机材料已成为储能电化学装置中传统无机电极材料的有前景的替代品。然而,氧化还原活性有机材料在实际锂离子电池装置中的应用受到其在电解质溶剂中不期望的溶解性、缓慢的电荷转移和质量传输以及加工复杂性的阻碍。在此,我们报道了一种新的分子工程方法来制备具有固有微孔性的氧化还原活性聚合物(PIMs),其具有亚纳米孔的开放网络和丰富的可及羰基基氧化还原位点,用于快速锂离子传输和存储。氧化还原活性PIMs可以通过溶液加工成具有均匀分散微观结构的薄膜和聚合物 - 碳复合材料,同时保持不溶于电解质溶剂。溶液加工的氧化还原活性PIM电极在锂离子电池中表现出改善的循环性能,没有明显的容量衰减。具有固有微孔性、可逆氧化还原活性和溶液可加工性综合性能的氧化还原活性PIMs可能在各种用于储能、传感器和电子应用的电化学装置中具有广泛的用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b49f/9501925/5b4224642d49/ja2c07575_0002.jpg

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