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Atomic hydrogen adsorption on lithium-doped graphite surfaces

机译:掺锂石墨表面的原子氢吸附

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摘要

The effects of lithium doping of pristine and defective graphite surfaces on hydrogen adsorption are studied by the first-principles Plane-Wave Density Functional Theory. The surface defects are simulated by a single atomic vacancy. The DFT calculation is corrected for long-range effects through semi-empirical London terms for each constituent of the system. The lithium doping of the graphite surfaces notably reinforces hydrogen atom binding. Qualitative comparison with experimental results is given using the lithium 1s energy level shifts induced by the atomic vacancy and/or hydrogen trapping.
机译:采用第一性原理平面波密度泛函理论研究了原始和缺陷石墨表面锂掺杂对氢吸附的影响.表面缺陷由单个原子空位模拟。DFT 计算通过系统每个组成部分的半经验伦敦项针对长期效应进行校正。石墨表面的锂掺杂显着加强了氢原子结合。使用原子空位和/或氢俘获引起的锂 1s 能级位移与实验结果进行了定性比较。

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