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Electric field enhanced adsorption and diffusion of adatoms in MoS2 monolayer

机译:电场增强MoS2单层中吸附原子的吸附和扩散

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摘要

A new phenomenon, electric field enhanced adsorption and diffusion of lithium, magnesium and aluminum ions in a MoS2 monolayer, was investigated using density functional theory in this study. With the electric field increased from 0 to 0.8 V/Å, the adsorption energies of the Li, Mg and Al atoms in the MoS2 monolayer were decreased from −2.01 to −2.49 eV, from −0.80 to −1.28 eV, and −2.71 to −3.01 eV, respectively. The corresponding diffusion barriers were simultaneously decreased from 0.23 to 0.08 eV, from 0.15 to 0.10 eV, and 0.24 to 0.21 eV for the Li, Mg and Al ions, respectively. We concluded that the external electric field can increase the charging speed of rechargeable ion batteries based on the MoS2 anode materials.
机译:利用密度泛函理论研究了电场增强MoS2单层中锂,镁和铝离子吸附和扩散的新现象。随着电场从0增加到0.8 V /Å,MoS2单层中Li,Mg和Al原子的吸附能从-2.01降低到-2.49 eV,从-0.80降低到-1.28 eV,和-2.71降低到分别为-3.01 eV。对于Li,Mg和Al离子,相应的扩散势垒同时从0.23降低到0.08 eV,从0.15降低到0.10 eV,并且从0.24降低到0.21 eV。我们得出的结论是,外部电场可以提高基于MoS2阳极材料的可充电离子电池的充电速度。

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