Shi Hongqi, Zhang Cunduan, Zhan Jianming, Chen Jiajia, Li Xinxing, Gao Zhengyuan, Li Zhida
Suqian University, Suqian, Jiangsu 223800, China.
College of Materials Science and Engineering, Nanjing Tech University, Nanjing 211816, China.
ACS Appl Mater Interfaces. 2023 Aug 2;15(30):36190-36200. doi: 10.1021/acsami.3c05666. Epub 2023 Jul 18.
The use of bismuth (Bi) as an anode material in nickel-metal batteries has gained significant attention due to its highly reversible redox reaction and suitable operating conditions. However, the cycling stability and flexibility of nickel-bismuth (Ni//Bi) batteries need to be further improved. This paper employs a facile electrodeposition technique to prepare Bi nanosheets uniformly grown on a porous carbon cloth (PCC), denoted as Bi-PCC electrodes. The Bi-PCC electrode portrays a specific surface area and good wettability that enable fast charge transfer and ion transport channels. Consequently, the Bi-PCC electrode demonstrates a high specific capacity of up to 297.1 mAh g at 2 A g, with a capacity retention of up to 71.5% at 2-40 A g and an impressive capacity retention of 79.9% after 1000 cycles at 2-40 A g. More importantly, the flexible rechargeable Ni//Bi battery (denoted as Ni(OH)-PCC//Bi-PCC) with Bi-PCC as the anode and Ni(OH)-PCC as the cathode has excellent electrochemical performance. The Ni(OH)-PCC//Bi-PCC battery boasts a remarkable capacity retention of 93.6% after 3000 cycles at 10 A g. Further, the cell presents a maximum energy density of 73.1 Wh kg and an impressive power density of 11.9 kW kg.
铋(Bi)作为镍金属电池的阳极材料,因其高度可逆的氧化还原反应和合适的工作条件而备受关注。然而,镍 - 铋(Ni//Bi)电池的循环稳定性和柔韧性仍需进一步提高。本文采用一种简便的电沉积技术,制备了均匀生长在多孔碳布(PCC)上的铋纳米片,即Bi - PCC电极。Bi - PCC电极具有较大的比表面积和良好的润湿性,能够实现快速的电荷转移和离子传输通道。因此,Bi - PCC电极在2 A g电流密度下展现出高达297.1 mAh g的高比容量,在2 - 40 A g电流密度下容量保持率高达71.5%,在2 - 40 A g电流密度下循环1000次后容量保持率高达79.9%。更重要的是,以Bi - PCC为阳极、Ni(OH)-PCC为阴极的柔性可充电Ni//Bi电池(记为Ni(OH)-PCC//Bi-PCC)具有优异的电化学性能。Ni(OH)-PCC//Bi-PCC电池在10 A g电流密度下循环3000次后容量保持率高达93.6%。此外,该电池的最大能量密度为73.1 Wh kg,功率密度高达11.9 kW kg。