Kao Sheng-Hung, Anuratha Krishnan Shanmugam, Wei Sung-Yen, Lin Jeng-Yu, Hsieh Chien-Kuo
Department of Materials Engineering, Center for Plasma and Thin Film Technologies, Ming Chi University of Technology, New Taipei City 24301, Taiwan.
Department of Chemical and Materials Engineering, Tunghai University, Taichung City 407224, Taiwan.
Nanomaterials (Basel). 2022 Nov 2;12(21):3867. doi: 10.3390/nano12213867.
In this paper, a facile and rapid aqueous-based electrochemical technique was used for the phase conversion of Ni into Ni(OH) thin film. The Ni(OH) thin film was directly converted and coated onto the network surface of Ni foam (NF) via the self-hydroxylation process under alkaline conditions using a simple cyclic voltammetry (CV) strategy. The as-formed and coated Ni(OH) thin film on the NF was used as the catalyst layer for the direct growth of carbon nanotubes (CNTs). The self-converted Ni(OH) thin film is a good catalytic layer for the growth of CNTs due to the fact that the OH of the Ni(OH) can be reduced to HO to promote the growth of CNTs during the CVD process, and therefore enabling the dense and uniform CNTs growth on the NF substrate. This binder-free CNTs/NF electrode displayed outstanding behavior as an electric double-layer capacitor (EDLC) due to the large surface area of the CNTs, showing excellent specific capacitance values of 737.4 mF cm in the three-electrode configuration and 319.1 mF cm in the two-electrode configuration, at the current density of 1 mA cm in a 6 M KOH electrolyte. The CNTs/NF electrode also displayed good cycling stability, with a capacitance retention of 96.41% after 10,000 cycles, and this the excellent cycling performance can be attributed to the stable structure of the direct growth of CNTs with a strong attachment to the NF current collector, ensuring a good mechanical and electrical connection between the NF collector and the CNTs.
在本文中,采用了一种简便快速的水基电化学技术将镍转化为氢氧化镍薄膜。通过简单的循环伏安法(CV)策略,在碱性条件下利用自羟基化过程将氢氧化镍薄膜直接转化并涂覆在泡沫镍(NF)的网络表面上。在NF上形成并涂覆的氢氧化镍薄膜用作直接生长碳纳米管(CNT)的催化剂层。自转化的氢氧化镍薄膜是用于CNT生长的良好催化层,因为在化学气相沉积(CVD)过程中,氢氧化镍中的OH可以还原为HO以促进CNT的生长,从而能够在NF基板上实现致密且均匀的CNT生长。由于CNT的大表面积,这种无粘合剂的CNT/NF电极作为双电层电容器(EDLC)表现出出色的性能,在6M KOH电解质中,在1mA/cm的电流密度下,三电极配置下的比电容值为737.4mF/cm,两电极配置下为319.1mF/cm。CNT/NF电极还表现出良好的循环稳定性,在10000次循环后电容保持率为96.41%,这种优异的循环性能可归因于CNT直接生长的稳定结构,其与NF集流体有很强的附着,确保了NF集流体与CNT之间良好的机械和电气连接。