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首页> 外文期刊>Physics Letters, A >Molybdenum carbide nano-sheet as a high capacity anode material for monovalent alkali metal-ion batteries-Theoretical investigation
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Molybdenum carbide nano-sheet as a high capacity anode material for monovalent alkali metal-ion batteries-Theoretical investigation

机译:碳化钼纳米片作为一价碱金属离子电池的高容量阳极材料 - 理论研究

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This contribution presents a theoretical investigation of monovalent metal-ion adsorption and diffusion on two-dimensional (2D) buckled nanostructure of molybdenum carbide (MoC) by using the first principle method. We find that buckled MoC nanostructure exhibits great stability, semiconducting electronic property, and high performance as electrode material. Interestingly, Crystal Orbital Hamilton population (COHP) method results show that buckled MoC is chemically stable in a wide range of temperatures, and various Li, Na, ions adsorbed configurations, which is beneficial for anode materials. Especially, single-layer MoC exhibits a superior theoretical capacity of 993.16 mAhg(-1) for Li-ions and 496.58 mAh g(-1) for Na/K-ions. The storage capacity of 1200 mA hg(-1) is found for the adsorption of ions on multilayer bulk MoC. Moreover, migration energy barriers are predicted as 0.38 eV for Li, 0.32 eV for Na, and 0.24 eV for K; these remarkable results determine the applicability of buckled MoC as ideal anode material for metal-ion battery applications. (C) 2020 Elsevier B.V. All rights reserved.
机译:通过使用第一个原理方法,该贡献呈现了对二价金属离子吸附和二维金属离子吸附和扩散的理论研究,通过使用第一原理方法对碳化钼(MOC)的二维(2D)屈曲纳米结构。我们发现屈曲的MOC纳米结构表现出极大的稳定性,半导体电子性能和高性能作为电极材料。有趣的是,水晶轨道汉密尔顿人口(COHP)方法结果表明,屈曲MOC在各种温度下在化学稳定,各种LI,NA,离子吸附的构型,这对阳极材料有益。特别是,单层MOC对于NA / K离子的Li-离子和496.58mahg(-1)的优异理论容量为993.16mAhg(-1)。发现1200 mA Hg(-1)的储存能力用于在多层批量MOC上吸附离子。此外,迁移能量屏障预测为LI,0.32eV的0.38eV,NA为0.24eV,适用于0.24eV;这些显着的结果确定屈曲MOC作为金属离子电池应用的理想阳极材料的适用性。 (c)2020 Elsevier B.v.保留所有权利。

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