Gao Nan, Ye Panbin, Chen Jinghuang, Xiao Jingyi, Yang Xiaowei
School of Materials Science and Engineering, Taizhou University, Taizhou 318000, China.
Instrumental Analysis Center, Dalian University of Technology, Dalian 116024, China.
Langmuir. 2023 Jul 25;39(29):10270-10279. doi: 10.1021/acs.langmuir.3c01371. Epub 2023 Jul 13.
The bilayer borophene has been successfully fabricated in experiments recently and possesses superior antioxidation and robust metallic properties, which holds great promise for the future anode materials of Li-ion batteries. Herein, using first-principles calculations, two bilayer borophenes including 6/ or 6̅2 symmetry groups with or without vacancy defects are comprehensively explored and acted as electrode materials with high performance in Li-ion batteries. The charge density difference, adsorption energies, and Bader charge analysis are calculated and discussed for single lithium adsorbed on bilayer borophene. The results shown that with the increase of lithium concentration, the adsorption energies are rapidly decreased due to the repulsion of boron atoms except for the 6̅2 systems with double side adsorption and corresponding energies remain the narrow range. Meanwhile, the partial density of states shows metallic character after lithium adsorption and indicates good conductivity for the charge-discharge process. Furthermore, small diffusion barriers, low average open-circuit voltage, can be achieved, and large storage capacity is up to 930.2 mA h/g at the lower lithium content of 0.375. These results propose that bilayer borophene might be a good choice for anode material applications in future Li-ion batteries with fast ion diffusion and high power density.
双层硼烯最近已在实验中成功制备出来,它具有优异的抗氧化性能和强大的金属特性,这使其在锂离子电池未来的负极材料方面极具潜力。在此,通过第一性原理计算,全面探究了两种具有6/或6̅2对称群且有无空位缺陷的双层硼烯,并将其作为锂离子电池中高性能的电极材料。计算并讨论了单层锂吸附在双层硼烯上的电荷密度差、吸附能和巴德电荷分析。结果表明,随着锂浓度的增加,除了具有双侧吸附的6̅2体系外,由于硼原子的排斥作用,吸附能迅速降低,且相应能量保持在较窄范围内。同时,锂吸附后的态密度部分显示出金属特性,表明在充放电过程中具有良好的导电性。此外,可以实现较小的扩散势垒、较低的平均开路电压,并且在锂含量较低为0.375时,大容量可达930.2 mA h/g。这些结果表明,双层硼烯可能是未来锂离子电池负极材料应用的一个不错选择,具有快速离子扩散和高功率密度。