Fan Mouping, Huang Zexi, Chen Youchen, Chen Yuanmao, Wu Wenli, Ke Xi, Shi Zhicong
Institute of Batteries, School of Materials and Energy, Guangdong University of Technology, Guangzhou 510006, People's Republic of China.
Nanotechnology. 2021 Aug 31;32(47). doi: 10.1088/1361-6528/ac1cc1.
Lithium metal batteries (LMBs) have received extensive attention and research interest as high specific energy systems. However, the issues of Li dendrites growth in LMBs restrict their practical applications. The development of lithiophilic collectors can effectively solve the issues of Li dendrites growth. This study reports excellent lithium storage performance of lithiophilic nanosheet arrays which consist of electronic conductor Ni and ionic conductor LiO (Ni-LONSs) on Ni foil (NF) fabricated via a simple preparation method for LMBs. The ionic conductor LiO of the Ni-LONSs layer is lithiophilic and can induce uniform Li deposition on the Ni-LONSs collector. In addition, the nanosheet array structure of the Ni-LONSs collector is beneficial to slow down the volume change of the Li plating/stripping. In comparison with the NF collector, due to the specific nanosheet array structure of Ni-LONSs collector, the Ni-LONSs collector demonstrates excellent coulombic efficiency of 97.2% after 280 cycles (95.7% after 100 cycles of NF collector) and satisfactory cycling lifespan of 340 h (about 120 h of NF collector) at 0.5 mA cmwith 1.0 mAh cm. Furthermore, the Ni-LONSs collector shows superior electrochemical performance in Ni-LONS/Li∣LiFePOfull cells. The excellent lithium storage performance of Ni-LONSs collector with mixed ionic/electronic conductor is conducive to the development and practical applications of LMBs.
锂金属电池(LMBs)作为高比能系统受到了广泛关注和研究兴趣。然而,LMBs中锂枝晶生长的问题限制了它们的实际应用。亲锂集流体的开发可以有效解决锂枝晶生长的问题。本研究报道了通过一种简单的制备方法在镍箔(NF)上制备的由电子导体镍和离子导体LiO组成的亲锂纳米片阵列(Ni-LONSs)在LMBs中的优异储锂性能。Ni-LONSs层的离子导体LiO是亲锂的,能够诱导锂在Ni-LONSs集流体上均匀沉积。此外,Ni-LONSs集流体的纳米片阵列结构有利于减缓锂电镀/剥离的体积变化。与NF集流体相比,由于Ni-LONSs集流体独特的纳米片阵列结构,在0.5 mA cm且1.0 mAh cm的条件下,Ni-LONSs集流体在280次循环后表现出97.2%的优异库仑效率(NF集流体在100次循环后为95.7%),循环寿命达340 h(NF集流体约为120 h)。此外,Ni-LONSs集流体在Ni-LONS/Li∣LiFePO全电池中表现出优异的电化学性能。具有混合离子/电子导体的Ni-LONSs集流体的优异储锂性能有利于LMBs的开发和实际应用。