首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Steric and chain length effects in the (√(3) × √(3))R30° structures of alkanethiol self-assembled monolayers on Au(111)
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Steric and chain length effects in the (√(3) × √(3))R30° structures of alkanethiol self-assembled monolayers on Au(111)

机译:Au(111)上烷硫醇自组装单分子层的(√(3)×√(3))R30°结构中的立体和链长效应

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The translational and orientational potential energy surfaces (PESs) of n-alkanethiols with up to four carbon atoms are studied for (√(3) × √(3))R30° self-assembled monolayers (SAMs). The PESs indicate that methanethiol may form SAM structures that are not accessible for long-chain thiols. The tilt of the thiol molecules is determined by a compromise between the preferred binding geometry at the sulfur atom and the steric requirements of the alkane chains. The Au-S bond lengths, offset from the bridge position (brg), and the Au-S-C bond angles result in tilt angles of the S-C bond in the range of 55-60°. As DFT/generalized gradient approximation systematically underestimates chain-chain interactions, the binding energies are corrected by comparison to MP2 interaction energies of alkane dimers in SAM-like configurations. The resulting thiol binding energies increase by approximately 1 kcal mol~(-1) per CH_2 group, which results in a substantial stabilization of long-chain SAMs due to chain-chain interactions. Furthermore, as the chain length increases, the accessible range of backbone tilt angles is constrained due to steric effects. The combination of these two effects may explain why SAM structures with long-chain thiols exhibit higher order in experiments. For each thiol two favorable SAM structures are found with the sulfur head group at the fcc-brg and hcp-brg positions, respectively. These domains may coexist in thermal equilibrium. In combination with the symmetry of the gold (111) surface, this raises the possibility of up to six different domains on single-crystal terraces. Reconstructions by an adatom or vacancy of ethanethiol SAMs with (√(3) × √(3))R30° lattice are also studied using PES scans. The results indicate that adsorption of thiols next to a vacancy is favorable and may lead to point defects inside SAMs. Showing potential: The translational and orientational potential energy surfaces of n-alkanethiols with up to four carbon atoms are studied for (√(3) × √(3))R30° self-assembled monolayers (SAMs, see picture). The binding energies with the van der Waals interactions corrected using MP2 calculations increase by about 1 kcal mol~(-1) per CH_2 group. This trend and the increasingly confined accessible range of the tilt angles may contribute to the higher order observed in long-chain thiol SAMs on gold.
机译:研究了(√(3)×√(3))R30°自组装单分子膜(SAMs)的最多含四个碳原子的正构烷硫醇的平移和取向势能表面(PESs)。 PES表明甲硫醇可能会形成长链硫醇无法接近的SAM结构。硫醇分子的倾斜度是由硫原子处的优选结合几何形状与烷烃链的空间要求之间的折衷决定的。从桥位置(brg)偏移的Au-S键长度和Au-S-C键角导致S-C键的倾斜角在55-60°的范围内。由于DFT /广义梯度逼近系统地低估了链间相互作用,因此通过与SAM类构型中烷烃二聚体的MP2相互作用能进行比较来校正结合能。每个CH_2基团所产生的硫醇结合能增加约1 kcal mol〜(-1),由于链间的相互作用,导致长链SAM的基本稳定。此外,随着链长的增加,由于空间效应,主链倾斜角的可接近范围受到限制。这两种作用的结合可以解释为什么具有长链硫醇的SAM结构在实验中表现出更高的顺序。对于每种硫醇,发现了两个有利的SAM结构,其硫头基分别位于fcc-brg和hcp-brg位置。这些域可以在热平衡中共存。结合金(111)表面的对称性,这增加了在单晶平台上形成多达六个不同畴的可能性。还使用PES扫描研究了具有(√(3)×√(3))R30°晶格的乙硫醇SAM的无原子或空位重构。结果表明,空位旁硫醇的吸附是有利的,并且可能导致SAM内部的点缺陷。显示电势:研究了(√(3)×√(3))R30°自组装单分子层(SAMs,见图)的最多含四个碳原子的正构烷硫醇的平移和取向势能面。用MP2计算校正的范德华相互作用的结合能每CH_2基增加约1kcal mol〜(-1)。这种趋势以及倾斜角的可访问范围越来越有限,可能有助于在金上的长链硫醇SAM中观察到更高的阶数。

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