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金属有机框架模板导向制备排列有序的五角形中空过渡金属硫化物作为高性能不对称超级电容器的阳极和阴极

Metal-Organic Framework Template-Directed Fabrication of Well-Aligned Pentagon-like Hollow Transition-Metal Sulfides as the Anode and Cathode for High-Performance Asymmetric Supercapacitors.

作者信息

Guo Dongxuan, Song Xiumei, Tan Lichao, Ma Huiyuan, Pang Haijun, Wang Xinming, Zhang Lulu

机构信息

School of Materials Science and Engineering, College of Chemical and Environmental Engineering , Harbin University of Science and Technology , Harbin 150040 , China.

State Key Laboratory of Urban Water Resource and Environment , Harbin Institute of Technology , Harbin 150090 , P. R. China.

出版信息

ACS Appl Mater Interfaces. 2018 Dec 12;10(49):42621-42629. doi: 10.1021/acsami.8b14839. Epub 2018 Nov 28.

DOI:10.1021/acsami.8b14839
PMID:30418014
Abstract

Given the exceptional specific surface area, geometry, and periodic porosity, transition-metal sulfides derived from crystalline metal-organic frameworks have spurred great interest in energy storage systems. Herein, employing a different sulfurization process, well-aligned NiCoS and CoS nanoarrays with a hollow/porous configuration derived from pentagon-like ZIF-67 are successfully designed and constructed on Ni foam. The hollow/porous structure grown on a conductive matrix can significantly improve electroactive sites, shorten charge/ion diffusion length, and enhance mass/electron transfer. Consequently, the obtained NiCoS possesses an excellent specific capacitance of 939 C/g, a fast charge/discharge rate, and a favorable life span. An advanced asymmetrical supercapacitor is fabricated by engaging NiCoS and CoS as cathode and anode materials, respectively, with a well-separated potential window. The obtained device delivers an exceptional energy density of 55.8 W h/kg at 695.2 W/kg, which is highly considerable to the recent transition metal sulfide-based devices. This facile tactic could be employed to construct other electrode materials with superior electrochemical properties.

摘要

鉴于晶体金属有机框架衍生的过渡金属硫化物具有特殊的比表面积、几何形状和周期性孔隙率,其在储能系统中引发了极大的关注。在此,采用不同的硫化工艺,在泡沫镍上成功设计并构建了由五角形ZIF-67衍生的具有中空/多孔结构的排列整齐的NiCoS和CoS纳米阵列。生长在导电基体上的中空/多孔结构可显著增加电活性位点,缩短电荷/离子扩散长度,并增强质量/电子转移。因此,所制备的NiCoS具有939 C/g的优异比电容、快速的充放电速率和良好的寿命。通过分别使用NiCoS和CoS作为阴极和阳极材料,制备了一种具有良好分离电位窗口的先进非对称超级电容器。所制备的器件在695.2 W/kg的功率密度下具有55.8 W h/kg的优异能量密度,这对于最近基于过渡金属硫化物的器件来说是非常可观的。这种简便的策略可用于构建具有优异电化学性能的其他电极材料。

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