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镁在氮掺杂碳化钼单层上的吸附与扩散

Adsorption and diffusion of magnesium on nitrogen-doped MoC monolayer.

作者信息

Fan Kaimin, Ni Jiangfeng, Tang Jing

机构信息

School of Science, Jiangsu Ocean University, Lianyungang, 222005, Jiangsu, China.

School of Chemical Engineering, Jiangsu Ocean University, Lianyungang, 222005, Jiangsu, China.

出版信息

J Mol Model. 2021 Oct 30;27(11):334. doi: 10.1007/s00894-021-04958-z.

Abstract

The Mg adsorption and diffusion behaviors on nitrogen-doped (N-doped) MoC monolayer have been investigated by the first principles based on density functional theory (DFT). To investigate the effect of nitrogen concentration on adsorption energies, MoCN (x=0.0625, 0.125, 0.1875, and 0.25) with four different nitrogen doping concentrations have been considered in the present work. The results show that N-doped MoC is benefit for Mg adsorption. In particular, when the doping concentration reaches to 14.29%, the adsorption energies of Mg on MoCN are in the region between -1.639 and -1.517 eV, e.g., the adsorption energies of Mg on T and H sites are -1.639 eV and -1.625 eV, which are decreased by 16.49% and 18.43% as compared with the pristine MoC. The calculations on diffusion behaviors show that the Mg diffusing between two adjacent favored sites via a high-symmetry site along H-B-H and H-B-H paths possesses the barriers of 0.021 eV and 0.028 eV. Additionally, the partial density of states (PDOS) reveals the interaction between Mg and MoCN, and indicates that nitrogen doping causes the PDOS peaks transfer to a lower energy level, which is benefit for the bonding between Mg and MoCN. These results suggest that the adsorption and diffusion behaviors of Mg have been enhanced by nitrogen doping.

摘要

基于密度泛函理论(DFT)的第一性原理研究了镁在氮掺杂(N掺杂)MoC单层上的吸附和扩散行为。为了研究氮浓度对吸附能的影响,本工作考虑了四种不同氮掺杂浓度的MoCN(x = 0.0625、0.125、0.1875和0.25)。结果表明,N掺杂MoC有利于镁的吸附。特别是,当掺杂浓度达到14.29%时,镁在MoCN上的吸附能在-1.639至-1.517 eV之间,例如,镁在T和H位点上的吸附能分别为-1.639 eV和-1.625 eV,与原始MoC相比分别降低了16.49%和18.43%。扩散行为的计算表明,镁沿着H-B-H和H-B-H路径通过高对称位点在两个相邻的有利位点之间扩散时,势垒分别为0.021 eV和0.028 eV。此外,态密度(PDOS)揭示了镁与MoCN之间的相互作用,并表明氮掺杂导致PDOS峰转移到较低能级,这有利于镁与MoCN之间的键合。这些结果表明,氮掺杂增强了镁的吸附和扩散行为。

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