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Chemisorption of Thiol-Functionalized Metallocene Molecules on Si(111)-Ag root 3 X root 3 Surface: A Density Functional Theory Study

机译:硫醇官能化茂金属分子在Si(111)-Ag根3 X根3表面上的化学吸附:密度泛函理论研究

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Herein, chemical adsorption properties of the thiol-functionalized metallocene molecules [M(C5H4SH)(2)] on Si(111)-Ag root 3 x root 3 surface were investigated using density functional theory calculation. For this purpose, thiol-modified ferrocene [Fe(C5H4SH)(2)], osmocene [Os(C5H4SH)(2)], and ruthenocene [Ru(C5H4SH)(2)] molecules were attached on the surface via two different binding models. The more favorable chemical binding energies of [Fe(C5H4SH)(2)], [Os(C5H4SH)(2)], and [Ru(C5H4SH)(2)] molecules were calculated as 23.42, 22.15, and 22.00 eV, respectively. The results showed that the adsorption energies of metallocene molecules change independently by increasing the radius of metal ions where on going down the group of the periodic table. The calculated adsorption energies showed that [Fe(C5H4SH)(2)] molecule was more stable on the Si(111)-Ag root 3 x root 3 surface. By calculating the electronic band structure for metallocene/Si(111)-Ag root 3 x root 3 surfaces, we identified a flat dispersion band in a part of the surface Brillouin zone. (C) 2015 Wiley Periodicals, Inc.
机译:在此,使用密度泛函理论计算研究了巯基官能化的茂金属分子[M(C5H4SH)(2)]在Si(111)-Ag根3 x根3表面上的化学吸附性能。为此,硫醇改性的二茂铁[Fe(C5H4SH)(2)],茂金属[Os(C5H4SH)(2)]和钌茂[Ru(C5H4SH)(2)]分子通过两种不同的结合方式附着在表面上楷模。 [Fe(C5H4SH)(2)],[Os(C5H4SH)(2)]和[Ru(C5H4SH)(2)]分子更有利的化学结合能分别计算为23.42、22.15和22.00 eV。 。结果表明,茂金属分子的吸附能通过增加金属离子的半径而独立地变化,当其沿着元素周期表的基数下降时。计算得出的吸附能表明,[Fe(C5H4SH)(2)]分子在Si(111)-Ag根3 x根3表面上更稳定。通过计算茂金属/ Si(111)-Ag根3 x根3表面的电子能带结构,我们在表面布里渊区的一部分中确定了平坦的分散带。 (C)2015年Wiley Periodicals,Inc.

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