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Stabilizing a molecular switch at solid surfaces: A density functional theory study of azobenzene on Cu(111), Ag(111), and Au(111)

机译:稳定固体表面上的分子开关:偶氮苯在Cu(111),Ag(111)和Au(111)上的密度泛函理论研究

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We present a density-functional theory trend study addressing the binding of the trans-cis conformational-switch azobenzene (C_6H_5-N=N-C_6H_5) at three coinage-metal surfaces. From the reported detailed energetic-, geometric-, and electronic-structure data we conclude that the governing factor for the molecule-surface interaction is a competition between covalent bonding of the central azo (-N=N-) bridge on the one hand and the surface interaction of the two closed-shell phenyl (-C_6H_5) rings on the other. With respect to this factor the cis conformer exhibits a more favorable gas-phase geometric structure and is thus more stabilized at the studied surfaces. With the overall binding still rather weak the relative stability of the two isomers is thereby reduced at Ag(111) and Au(111). This is significantly different at Cu(111), where the cis bonding is strong enough to even reverse the gas-phase energetic order at the level of the employed semilocal electronic exchange and correlation (xc) functional. While this actual reversal may well be affected by the deficiencies due to the approximate xc treatment, we critically discuss that the rationalization of the general effect of the surface on the metastable molecular states is quite robust. This should equally hold for the presented analysis of recent tip-manipulation and photoexcitation isomerization experiments from the view point of the derived bonding mechanism.
机译:我们提出了一个密度泛函理论趋势研究,以解决三个造币金属表面上反式顺式构象转换偶氮苯(C_6H_5-N = N-C_6H_5)的结合。从已报道的详细的能量,几何和电子结构数据中,我们得出结论,分子与表面相互作用的决定因素一方面是中央偶氮(-N = N-)桥的共价键之间的竞争,两个闭壳苯基(-C_6H_5)环在另一个上的表面相互作用。关于这个因素,顺式构象异构体表现出更有利的气相几何结构,因此在研究的表面上更稳定。由于总体结合仍然相当弱,因此两种异构体的相对稳定性在Ag(111)和Au(111)处降低。这在Cu(111)处是显着不同的,在Cu(111)处,顺式键合足够牢固,甚至可以在所用半局部电子交换和相关(xc)功能的水平上逆转气相高能级。尽管由于近似的xc处理,这种实际的逆转可能会受到缺陷的影响,但我们严格地讨论了表面对亚稳分子状态的一般影响的合理化是非常可靠的。从派生的键合机理的角度来看,这同样适用于最近对尖端操作和光激发异构化实验的分析。

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