Cai Xinhao, Yan Huihui, Yang Zhengwei, Li Wenru, Yu Haoxiang, Yan Lei, Zhang Liyuan, Shui Miao, Cui Yanhua, Shu Jie
School of Materials Science and Chemical Engineering, Ningbo University, Ningbo, Zhejiang 315211, China.
Dalton Trans. 2021 Aug 28;50(32):11030-11038. doi: 10.1039/d1dt01834e. Epub 2021 Jul 29.
With the development of electric vehicles, more and more attention has been paid to the kinetic performance of batteries, which is related to rapid charge/discharge and safety issues. To improve this aspect, CuNbO nanowires covered by nitrogen and sulfur co-doped carbon (CuNbO/NSC nanowires) are prepared by electrospinning combined with surface coating. As-prepared CuNbO/NSC nanowires present a high ion diffusion coefficient and electronic conductivity, showing good a kinetic performance. Specifically, they deliver a splendid capacity of 311.2 mA h g at 1 C and a superior cycling stability with a capacity fading of 0.031% per cycle upon 1000 cycles. At the same time, the electrochemical and structural reversibility is fully discussed and demonstrated by ex situ XRD, ex situ SEM and ex situ XPS based on the redox couples of Cu/Cu, Nb/Nb, and Nb/Nb. Contributing to peculiar physico-chemical properties, CuNbO/NSC nanowires are expected to be a candidate material for the anode in lithium-ion batteries.
随着电动汽车的发展,电池的动力学性能越来越受到关注,这与快速充放电及安全问题相关。为改善这一方面,通过静电纺丝结合表面包覆制备了氮硫共掺杂碳包覆的CuNbO纳米线(CuNbO/NSC纳米线)。所制备的CuNbO/NSC纳米线具有高离子扩散系数和电子电导率,展现出良好的动力学性能。具体而言,它们在1 C下具有311.2 mA h g的出色容量,以及优异的循环稳定性,在1000次循环后容量衰减为每循环0.031%。同时,基于Cu/Cu、Nb/Nb和Nb/Nb的氧化还原对,通过非原位XRD、非原位SEM和非原位XPS对电化学和结构可逆性进行了充分讨论和论证。由于具有独特的物理化学性质,CuNbO/NSC纳米线有望成为锂离子电池负极的候选材料。