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用于高性能水系可充电钴锌电池的双金属钴基金属有机框架纳米片的晶体工程

Crystal engineering of bimetallic cobalt-based metal-organic framework nanosheets for high-performance aqueous rechargeable cobalt-zinc batteries.

作者信息

Wang Huayu, Bai Jie, He Qingqing, Liao Yanxin, Wang Suna, Chen Lingyun

机构信息

Department of Applied Chemistry, School of Chemistry and Chemical Engineering, Chongqing University, Chongqing 401331, China.

Shandong Provincial Key Laboratory of Chemical Energy Storage and Novel Cell Technology, School of Chemistry and Chemical Engineering, Liaocheng University, Liaocheng 252000, China.

出版信息

J Colloid Interface Sci. 2024 Jul;665:172-180. doi: 10.1016/j.jcis.2024.03.123. Epub 2024 Mar 20.

DOI:10.1016/j.jcis.2024.03.123
PMID:38522157
Abstract

Aqueous rechargeable Zn-based batteries (ARZBs) have attracted increasing attention as favorable candidates for energy storage systems due to their high security, environmental friendliness, and abundance of electrode materials. At present, the most widely reported materials used in cobalt-zinc (Co-Zn) batteries are cobalt-based oxides and their derivatives, however, they still exhibit low actual capacities and unsatisfactory cycle lives. Metal-organic frameworks (MOFs), as a new class of porous materials with high specific surface area and adjustable pore size, have attracted considerable attention in the field of energy storage. Currently, pristine MOFs have currently few applications in Co-Zn batteries, and their performance is not ideal. Herein, we report a series of two-dimensional (2D) bimetallic CoM-MOF (M = Ni, Mn, Mg and Cu) nanosheets based on trimesic acid (HBTC) ligand as cathodes for alkaline Co-Zn batteries via a simple one-pot hydrothermal synthesis. Among the synthesized MOFs, the CoNi-MOF nanosheets have the best performance, exhibiting a high reversible capacity of 344 mA h g and demonstrating a good cycling life with 90 % capacity retention at 20 A g after 1500 cycles. The energy storage mechanism is studied through a series of ex-situ characterizations. This study is of great importance in advancing the application of 2D pristine MOFs for high-performance Co-Zn batteries.

摘要

水系可充电锌基电池(ARZBs)因其高安全性、环境友好性和丰富的电极材料,作为储能系统的理想候选者而受到越来越多的关注。目前,钴锌(Co-Zn)电池中报道最广泛的材料是钴基氧化物及其衍生物,然而,它们仍然表现出较低的实际容量和不尽人意的循环寿命。金属有机框架(MOFs)作为一类新型的具有高比表面积和可调孔径的多孔材料,在储能领域引起了相当大的关注。目前,原始MOFs在Co-Zn电池中的应用很少,其性能也不理想。在此,我们通过简单的一锅水热合成法,报道了一系列基于均苯三甲酸(HBTC)配体的二维(2D)双金属CoM-MOF(M = Ni、Mn、Mg和Cu)纳米片作为碱性Co-Zn电池的阴极。在合成的MOFs中,CoNi-MOF纳米片表现出最佳性能,具有344 mA h g的高可逆容量,并在1500次循环后在20 A g下表现出良好的循环寿命,容量保持率为90%。通过一系列非原位表征研究了储能机制。这项研究对于推进二维原始MOFs在高性能Co-Zn电池中的应用具有重要意义。

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