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一种源自钴基金属有机框架材料的新型催化剂,用于生长氮掺杂碳纳米管,以制备高性能全固态超级电容器。

A novel catalyst derived from Co-ZIFs to grow N-doped carbon nanotubes for all-solid-state supercapacitors with high performance.

作者信息

Qi Yunlong, Lv Tian, Chen Zilin, Duan Yu, Li Xiao, Tang Weiyang, Sun Quanhu, Zhai Dongmei, Chen Tao

机构信息

Shanghai Key Lab of Chemical Assessment and Sustainability, School of Chemical Science and Engineering, Tongji University, Shanghai 200092, China.

出版信息

Nanoscale. 2023 Aug 17;15(32):13280-13288. doi: 10.1039/d3nr01411h.

DOI:10.1039/d3nr01411h
PMID:37545477
Abstract

Carbon nanotubes (CNTs) have been widely used as electrode materials for electrochemical energy storage devices (, supercapacitors) due to their excellent chemical and physical properties. However, conventional approaches (, electron-beam vapor deposition and atomic layer deposition) to fabricate catalysts for the growth of CNTs are complex and demand high energy consumption. Herein, we report a facile method to synthesize catalysts derived from cobalt-containing zeolitic imidazolate frameworks (Co-ZIFs), which is exploited to construct the three-dimensional (3D) CNT hybrid materials for all-solid-state supercapacitors. In brief, Co-ZIFs with a controllable structure is first grown on the inner porous surface of carbon foams pyrolyzed from commercial melamine foams, followed by thermal annealing and chemical vapor deposition to grow CNTs, achieving 3D free-standing CNT-based hybrids. The well-distributed Co-ZIFs in the carbon foam enable the grown CNTs with uniform structures and morphologies. Using the fabricated CNT-based hybrid as electrodes, the assembled all-solid-state supercapacitors show a high specific capacitance of 19.4 mF cm at a current density of 0.5 mA cm, which could be further optimized to as high as 871.8 mF cm by incorporating the pseudocapacitive material of manganese dioxide in CNT-based hybrids. This study provides a facile solution approach to fabricate the catalyst for the growth of a CNT inner porous substrate; the resultant 3D free-standing hybrids could be used as efficient electrodes for high-performance energy storage devices beyond supercapacitors.

摘要

由于其优异的化学和物理性质,碳纳米管(CNTs)已被广泛用作电化学储能装置(如超级电容器)的电极材料。然而,用于制备碳纳米管生长催化剂的传统方法(如电子束气相沉积和原子层沉积)复杂且能耗高。在此,我们报道了一种简便的方法来合成源自含钴沸石咪唑框架(Co-ZIFs)的催化剂,该催化剂被用于构建用于全固态超级电容器的三维(3D)碳纳米管混合材料。简而言之,首先在由商用三聚氰胺泡沫热解得到的碳泡沫的内部多孔表面上生长具有可控结构的Co-ZIFs,然后进行热退火和化学气相沉积以生长碳纳米管,从而获得三维自立式碳纳米管基混合材料。碳泡沫中分布均匀的Co-ZIFs使得生长的碳纳米管具有均匀的结构和形态。使用制备的碳纳米管基混合材料作为电极,组装的全固态超级电容器在电流密度为0.5 mA cm时显示出19.4 mF cm的高比电容,通过在碳纳米管基混合材料中引入二氧化锰赝电容材料,该比电容可进一步优化至高达871.8 mF cm。本研究提供了一种简便的溶液法来制备用于在碳纳米管内部多孔基底上生长的催化剂;所得的三维自立式混合材料可作为高性能储能装置(不限于超级电容器)的高效电极。

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