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首页> 外文期刊>The Journal of Chemical Physics >Adsorption modes of cysteine on Au(111): Thiolate, amino-thiolate, disulfide
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Adsorption modes of cysteine on Au(111): Thiolate, amino-thiolate, disulfide

机译:半胱氨酸在Au(111)上的吸附方式:硫醇盐,氨基硫醇盐,二硫化物

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摘要

The adsorption of cysteine on the (111) surface of gold has been studied by means of periodic supercell density-functional theory calculations. A number of different adsorption modes are examined, including adsorption through the thiol group in either thiolate or disulfide form, and adsorption through both the thiol and amino functional groups. We find that at intermediate coverage densities the latter mode of adsorption is favored, followed by thiolate adsorption at the bridge (slightly displace toward fcc) site. The N-Au and S-Au bond strengths in the amino-thiolate adsorption are estimated to be of the order of 6 and 47 kcal/mol, respectively. The electronic structure of the different systems is analyzed, with focus on the total and projected density of states, as well as on the detailed character of the electronic states at the interface. States near the Fermi energy are found to have a metal-molecule antibonding character, whereas metal-molecule bonding states mostly occur near the lower edge of the Au-d band.
机译:半胱氨酸在金的(111)表面上的吸附已通过周期性的超级细胞密度泛函理论计算进行了研究。研究了许多不同的吸附模式,包括通过硫醇盐或二硫键形式的硫醇基团进行吸附,以及通过硫醇和氨基官能团进行吸附。我们发现,在中等覆盖密度下,后一种吸附方式更受青睐,其次是桥上的硫醇盐吸附(向fcc略微位移)。估计氨基硫醇盐吸附中的N-Au和S-Au键强度分别约为6 kcal / mol和47 kcal / mol。分析了不同系统的电子结构,重点是状态的总密度和预测密度,以及界面上电子状态的详细特征。发现接近费米能的状态具有金属-分子的抗键结合特性,而金属-分子的键合态主要出现在Au-d谱带的下边缘附近。

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