Li Yang, Xie Huaqing, Li Jing, Yamauchi Yusuke, Henzie Joel
School of Energy and Materials, Shanghai Polytechnic University, Shanghai 201209, China.
Shanghai Engineering Research Center of Advanced Thermal Functional Materials, Shanghai 201209, China.
ACS Appl Mater Interfaces. 2021 Sep 8;13(35):41649-41656. doi: 10.1021/acsami.1c10998. Epub 2021 Aug 30.
Metal-organic frameworks (MOFs) and their derivatives are promising materials for energy conversion and storage. This study demonstrates a solvent-free method to fabricate a CoO/carbon composite array derived from ZIF-67 for asymmetric supercapacitors. Tree-like Co metal arrays are electrodeposited on a surface and then directly converted into composite ZIF-67/Co-based MOF arrays via a chemical vapor deposition method (MOF-CVD). Finally, the CoO/carbon composite array is obtained by regulated calcination of the ZIF-67/Co composite array. The as-prepared CoO/carbon composite arrays provide a less tortuous pathway for ion diffusion, high pseudocapacitance from transition-metal oxides, and good electrical conductivity from carbon. Moreover, the absence of adhesives in array electrodes is also beneficial to the promotion of the electrochemical performance. The as-fabricated CoO/carbon composite array electrode shows excellent electrochemical performance with high energy density, high power density, superior rate capability, and long cycle life in an asymmetric supercapacitor. These MOF-derived composite arrays are promising candidate materials for power sources because of their good electrochemical performance.
金属有机框架材料(MOFs)及其衍生物是用于能量转换和存储的很有前景的材料。本研究展示了一种无溶剂方法,用于制备源自ZIF-67的CoO/碳复合阵列,用于不对称超级电容器。树状Co金属阵列电沉积在表面上,然后通过化学气相沉积法(MOF-CVD)直接转化为复合ZIF-67/Co基金属有机框架阵列。最后,通过对ZIF-67/Co复合阵列进行调控煅烧得到CoO/碳复合阵列。所制备的CoO/碳复合阵列提供了一条离子扩散曲折度较小的途径、来自过渡金属氧化物的高赝电容以及来自碳的良好导电性。此外,阵列电极中不存在粘合剂也有利于提升电化学性能。所制备的CoO/碳复合阵列电极在不对称超级电容器中表现出优异的电化学性能,具有高能量密度、高功率密度、卓越的倍率性能和长循环寿命。由于其良好的电化学性能,这些源自MOF的复合阵列是很有前景的电源候选材料。