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A density functional study on the adsorption of methanethiolate on the (111) surfaces of noble metals

机译:甲硫醇在贵金属(111)表面吸附的密度泛函研究

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The adsorption e~ergies and structures of methaJlethiolate, SCH_3, on the (III) surfaces of Au, Ag, and Cu have been studied using a density functional theory .The results obtained for the Au surface are in good, agreement with experiments and previous calculations:the strength of the adsorption energies is found to be Cu>Ag> Au, and the nature of the chemisorption bond is discussed. The strong interaction between the SCH_3 .aI:ldCu surface can be explained in a similar way to that as for the binding energy of SCH3 with metal atoms. Scalar-relativistic effects in the adsorption energies and adsorption structures, which dominate the differences observed between the Ag and Au surfaces, are studied using quasirelativistic and nonrelativistic pseudopotentials. The relativistic effects decrease the adsorption energy of SCH_3 on the Au( III) surface, although the binding energy of the AuSCH3 complex is increased by relativity. The unexpected relativistic effects are also discussed.
机译:运用密度泛函理论研究了甲基硫氰酸盐SCH_3在Au,Ag和Cu的(III)表面上的吸附能和结构.Au表面的结果良好,与实验一致计算:发现吸附能的强度为Cu> Ag> Au,并讨论了化学吸附键的性质。 SCH_3.aI:ldCu表面之间的强相互作用可以用与SCH3与金属原子的结合能相似的方式解释。使用准相对论性和非相对论性伪势研究了吸附能和吸附结构中的标量相对论效应,该效应主导了Ag和Au表面之间的差异。尽管相对论使AuSCH3配合物的结合能增加,但相对论效应降低了SCH_3在Au(III)表面的吸附能。还讨论了意想不到的相对论效应。

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