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功能化二维硼化铁化合物作为锂离子电池中的新型电极材料。

Functionalized two-dimensional iron boride compounds as novel electrode materials in Li-ion batteries.

作者信息

Liu Yu, Wang Haiyan, Fu Yiwen, Li Dan, Wei Mengjie, Wu Qinghua, Hu Qianku

机构信息

School of Materials Science and Engineering, Henan Polytechnic University, Jiaozuo, 454000, China.

Public experimental teaching center, Panzhihua University, Panzhihua, 617000, China.

出版信息

Phys Chem Chem Phys. 2023 Aug 30;25(34):23133-23140. doi: 10.1039/d3cp02468g.

Abstract

MBenes, a class of two-dimensional metal borides, have emerged as a cutting-edge research frontier and a hotspot for electrode materials in ion batteries. This work presents a systematic investigation of the performance of two-dimensional iron boride (FeB) as an electrode material for lithium-ion batteries (LIBs), utilizing first-principles calculations. The results indicate that FeB exhibits remarkable structural stability and excellent conductivity, making it an extremely promising electrode material for LIBs. FeB has the capability to adsorb a monolayer of Li atoms, and exhibits a maximum theoretical capacity of 364 mA h g, a high average open circuit voltage (OCV) of 1.08 V, and a low diffusion barrier energy of 0.24 eV. Through the investigation of electrochemical properties of functionalized FeB, it has been discovered that surface functionalization exerts a positive impact on lithium storage. Theoretical lithium storage capacities of FeBT (T = F, O and S) are 538 mA h g, 555 mA h g and 476 mA h g, respectively. However, the introduction of F and O functional groups significantly reduces diffusion barriers to 0.081 eV and 0.036 eV, respectively, while the introduction of the S functional group markedly decreases the average OCV to approximately 0.25 V. These interesting findings suggest that FeB has great potential in the future development of LIBs.

摘要

MBenes是一类二维金属硼化物,已成为前沿研究领域和离子电池电极材料的热点。这项工作利用第一性原理计算,对二维硼化铁(FeB)作为锂离子电池(LIBs)电极材料的性能进行了系统研究。结果表明,FeB具有显著的结构稳定性和优异的导电性,使其成为LIBs极具前景的电极材料。FeB能够吸附单层锂原子,理论比容量最高可达364 mA h g,平均开路电压(OCV)高达1.08 V,扩散势垒能低至0.24 eV。通过对功能化FeB电化学性能的研究发现,表面功能化对锂存储有积极影响。FeBT(T = F、O和S)的理论锂存储容量分别为538 mA h g、555 mA h g和476 mA h g。然而,F和O官能团的引入分别将扩散势垒显著降低至0.081 eV和0.036 eV,而S官能团的引入则使平均OCV明显降至约0.25 V。这些有趣的发现表明,FeB在LIBs未来发展中具有巨大潜力。

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