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用于高效锂存储的先进一维金属有机配位聚合物的简便构建

Facile Construction of Advanced 1D Metal-Organic Coordination Polymer for Efficient Lithium Storage.

作者信息

Du Jia, Liu Xueguo, Li Bingke

机构信息

School of Biology and Chemical Engineering, Nanyang Institute of Technology, No. 80, Changjiang Road, Nanyang 473004, China.

Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education), College of Chemistry, Nankai University, Tianjin 300071, China.

出版信息

Molecules. 2023 Dec 7;28(24):7993. doi: 10.3390/molecules28247993.

Abstract

Recently, coordination polymers (CPs) have been frequently reported in the field of energy storage as electrode materials for lithium-ion batteries (LIBs) due to their highly adjustable architectures, which have a variety of active sites and obviously defined lithium transport routes. A well-designed redox-active organic linker with potential active sites for storing lithium ions, pyrazine-2,3-dicarboxylate (HPDA), was applied for generating CPs by a simple hydrothermal method. When employed as anode materials in LIBs, those two one-dimensional (1D) CPs with an isomorphic composition, [M(PDA)(HO)] (M = Co for Co-PDA and Ni for Ni-PDA), produced outstanding reversible capacities and stable cycling performance. The Co-PDA displays a substantial reversible capacity of 936 mAh g at 200 mA g after 200 cycles, as well as an excellent cycling life at high currents. According to the ex situ characterizations, the high reversible specific capacity of the post-cycled electrodes was found to be a result of both the transition metal ions and the organic ligands, and Co-PDA and Ni-PDA electrode materials show reversible insertion/extraction processes that are accompanied by crystallization to an amorphous state.

摘要

近年来,配位聚合物(CPs)因其高度可调节的结构,在锂离子电池(LIBs)电极材料的储能领域频繁被报道,这种结构具有多种活性位点和明确的锂传输路径。一种精心设计的具有储存锂离子潜在活性位点的氧化还原活性有机连接体——吡嗪 - 2,3 - 二羧酸(HPDA),通过简单的水热法用于生成配位聚合物。当用作锂离子电池的负极材料时,这两种具有同构组成的一维(1D)配位聚合物,[M(PDA)(HO)](M = Co时为Co - PDA,M = Ni时为Ni - PDA),展现出出色的可逆容量和稳定的循环性能。Co - PDA在200 mA g的电流密度下经过200次循环后,具有936 mAh g的可观可逆容量,以及在高电流下优异的循环寿命。根据非原位表征,发现循环后电极的高可逆比容量是过渡金属离子和有机配体共同作用的结果,并且Co - PDA和Ni - PDA电极材料显示出可逆的嵌入/脱出过程,同时伴随着结晶为非晶态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c906/10745800/1dfb38b92584/molecules-28-07993-g001.jpg

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