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基于铝掺杂的提高镍锌电池钴镍氢氧化物循环寿命的方法。

Aluminum-doping-based method for the improvement of the cycle life of cobalt-nickel hydroxides for nickel-zinc batteries.

作者信息

Zhu Xinqiang, Wu Yatao, Lu Yingzhuo, Sun Yangyi, Wu Qiang, Pang Yajun, Shen Zhehong, Chen Hao

机构信息

School of Engineering, Zhejiang A&F University, Hangzhou 311300, PR China.

Key Laboratory of Advanced Textile Materials and Manufacturing Technology and Engineering Research Center for Eco-Dyeing & Finishing of Textiles, Zhejiang Sci-Tech University, Hangzhou 310018, PR China.

出版信息

J Colloid Interface Sci. 2021 Apr;587:693-702. doi: 10.1016/j.jcis.2020.11.029. Epub 2020 Nov 17.

Abstract

The unsatisfactory cycle life of nickel-based cathodes hinders the widespread commercial usage of nickel-zinc (Ni-Zn) batteries. The most frequently used methods to improve the cycle life of Ni-based cathodes are usually complicated and/or involve using organic solvents and high energy consumption. A facile process based on the hydrolysis-induced exchange of the cobalt-based metal-organic framework (Co-MOF) was developed to prepare aluminum (Al)-doped cobalt-nickel double hydroxides (Al-CoNiDH) on a carbon cloth (CC). The entire synthesis process is highly efficient, energy-saving, and has a low negative impact on the environment. Compared to undoped cobalt-nickel double hydroxide (Al-CoNiDH-0%), the as-prepared Al-CoNiDH as the electrode material displays a remarkably improved cycling stability because the Al-doping successfully depresses the transition in the crystal phase and microstructure during the long cycling. Benefiting from the improved performance of the optimal Al-CoNiDH electrode (Al-CoNiDH-5% electrode), the as-constructed aqueous Ni-Zn battery with Al-CoNiDH-5% as the cathode (Al-CoNiDH-5%//Zn) displays more than 14% improvement in the cycle life relative to the Al-CoNiDH-0%//Zn battery. Moreover, this Al-CoNiDH-5%//Zn battery achieves a high specific capacity (264 mAh g), good rate capability (72.4% retention at a 30-fold higher current), high electrochemical energy conversion efficiency, superior fast-charging ability, and strong capability of reversible switching between fast charging and slow charging. Furthermore, the as-assembled quasi-solid-state Al-CoNiDH-5%//Zn battery exhibits a decent electrochemical performance and satisfactory flexibility.

摘要

镍基阴极不尽人意的循环寿命阻碍了镍锌(Ni-Zn)电池的广泛商业应用。提高镍基阴极循环寿命最常用的方法通常很复杂,和/或涉及使用有机溶剂且能耗高。基于水解诱导的钴基金属有机框架(Co-MOF)交换,开发了一种简便的方法,在碳布(CC)上制备铝(Al)掺杂的钴镍双氢氧化物(Al-CoNiDH)。整个合成过程高效、节能,且对环境的负面影响小。与未掺杂的钴镍双氢氧化物(Al-CoNiDH-0%)相比,所制备的Al-CoNiDH作为电极材料表现出显著提高的循环稳定性,因为Al掺杂成功抑制了长循环过程中的晶相和微观结构转变。受益于最佳Al-CoNiDH电极(Al-CoNiDH-5%电极)性能的提升,以Al-CoNiDH-5%作为阴极构建的水系Ni-Zn电池(Al-CoNiDH-5%//Zn)相对于Al-CoNiDH-0%//Zn电池,循环寿命提高了14%以上。此外,这种Al-CoNiDH-5%//Zn电池具有高比容量(264 mAh g)、良好的倍率性能(在30倍高电流下保持72.4%)、高电化学能量转换效率、优异的快充能力以及在快充和慢充之间可逆切换的强大能力。此外,组装好的准固态Al-CoNiDH-5%//Zn电池表现出良好的电化学性能和令人满意的柔韧性。

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