基于从头计算的吸附在p(2x2) W(001)衬底上的钡原子的功函数急剧降低

Ming-Chieh Lin, R. Jao
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引用次数: 0

摘要

用从头算方法研究了单层吸附钡和锂原子对钨表面功函数的减小。我们仔细和系统地测试了密度泛函理论(DFT)计算在局部密度近似或广义梯度近似下的收敛性,使用平面波基集和超软伪势或投影增强波方法,如在维也纳ab-initio模拟包中实现的。DFT计算结果表明,在p(2times2) W(001)衬底上吸附Ba的功函数显著降低了约2.2 eV。利用这种方法,人们可以研究更复杂的吸附在不同材料的阴极表面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dramatic lowering of work function for the barium atoms adsorbed onto a p(2x2) W(001) substrate based on Ab initio calculations
Ab initio calculations are used to study the reduction of the work functions of tungsten (W) surfaces with one monolayer of adsorbed barium (Ba) and lithium atoms. We have carefully and systematically test the convergence of density-functional-theory (DFT) calculations in the local-density approximation or generalized-gradient approximation with a plane-wave basis set and ultra-soft pseudopotentials or the projector-augmented wave method as implemented in Vienna ab-initio simulation package. The DFT calculation shows that the work function of the Ba adsorbed onto a p(2times2) W(001) substrate is dramatically lowered by about 2.2 eV, provided that the fourfold hollow sites are occupied. With this approach, one can investigate more complex adsorbates onto the cathode surface of different materials.
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