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一种二维金属SnB单层作为非锂离子电池的负极材料。

A two-dimensional metallic SnB monolayer as an anode material for non-lithium-ion batteries.

作者信息

Kuai Yue, Chen Changcheng, Abduryim Elyas, Gao Shuli, Chen Wen, Wu Ge, Wu Liyuan, Dong Chao, Zou Weixia, Lu Pengfei

机构信息

School of Science, Xi'an University of Architecture and Technology, Xi'an, 710055, China.

CAS Key Laboratory for Biomedical Effects of Nanomaterials and Nanosafety, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, P. R. China.

出版信息

Phys Chem Chem Phys. 2022 Oct 5;24(38):23737-23748. doi: 10.1039/d2cp03942g.

Abstract

Na-, K- and Mg-ion batteries (NIBs, KIBs and MIBs) have drawn considerable interest due to their high abundance and excellent safety. However, the lack of high-performance anode materials is a major obstacle to its development. A metallic SnB planar monolayer is predicted by using the two-dimensional global minimum structure search method of swarm intelligence. Based on first-principles calculations, we proved that the metal SnB monolayer has high binding energy and excellent dynamical, thermal and mechanical stability. It is worth noting that the SnB monolayer has several stable adsorption sites for Na-, K- and Mg-ions, so it has a high theoretical capacity of 620.93, 517.44 and 620.93 mA h g, respectively. For Na-, K- and Mg-ion batteries, the low diffusion barriers of the SnB monolayer are 0.22, 0.07 and 0.68 eV, and the low average open circuit voltages are 0.42, 0.49 and 0.23 V, which ensure long service life and fast charging in practical applications. In addition, it is proved that the SnB monolayer maintains excellent conductivity and stability during the charge-discharge process. The results show that the SnB monolayer offers innovative advantages for the development of new two-dimensional planar structures that further advance the development of anode materials for metal ion batteries.

摘要

钠、钾和镁离子电池(NIBs、KIBs和MIBs)因其高丰度和出色的安全性而备受关注。然而,缺乏高性能负极材料是其发展的主要障碍。通过使用群体智能的二维全局最小结构搜索方法预测了一种金属SnB平面单层。基于第一性原理计算,我们证明了金属SnB单层具有高结合能以及出色的动力学、热学和力学稳定性。值得注意的是,SnB单层对钠、钾和镁离子有几个稳定的吸附位点,因此其理论容量分别高达620.93、517.44和620.93 mA h g。对于钠、钾和镁离子电池,SnB单层的低扩散势垒分别为0.22、0.07和0.68 eV,低平均开路电压分别为0.42、0.49和0.23 V,这确保了在实际应用中的长使用寿命和快速充电。此外,已证明SnB单层在充放电过程中保持出色的导电性和稳定性。结果表明,SnB单层为新型二维平面结构的开发提供了创新优势,进一步推动了金属离子电池负极材料的发展。

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