首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Inter- and Intramolecular Temperature-Dependent Vibrational Perturbations of Alkanethiol Self-Assembled Monolayers
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Inter- and Intramolecular Temperature-Dependent Vibrational Perturbations of Alkanethiol Self-Assembled Monolayers

机译:烷硫醇自组装单分子膜的分子间和分子内温度相关的振动扰动

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摘要

The infrared spectra of octanethiol,dodecanethiol,and hexadecanethiol (C_8,C_12,and C_16,respectively) monolayers adsorbed on Au(111) textured surfaces have been explored in the 25-300 K regime.The C-H stretching modes typically shift by several wavenumbers to lower frequencies and the intensities increase by as much as 75% as the temperature is decreased,providing evidence of,among other effects,the coupling of these stretching modes with lower energy vibrational modes.In contrast,for all temperatures below 300 K,the positions of the C-H bands of fully hydrogenated Ci6 shift by several wavenumbers to higher frequencies as the hydrogenated adsorbates are increasingly diluted in a matrix of fully deuterated C_16,showing that all bands are subject to intermolecular couplings.The analysis of the behavior of the C-H stretching bands suggests that the temperature dependence of the vibrational frequencies associated with the methylene stretching modes is principally due to intermolecular couplings,whereas the temperature dependence of the vibrations associated with the methyl terminations is largely due to intramolecular couplings.It is suggested that the highly constrained geometry of the isotopically diluted monolayer may provide an environment that is less sensitive to intramolecular couplings with low-frequency modes than that of urea-clathrate-isolated species.
机译:在25-300 K范围内研究了吸附在Au(111)织构表面上的辛硫醇,十二烷硫醇和十六烷硫醇(分别为C_8,C_12和C_16)单层的红外光谱。较低的频率和强度随温度降低而增加多达75%,除其他效果外,还提供了这些拉伸模式与较低能量振动模式的耦合的证据。相反,对于300 K以下的所有温度,位置氢化的吸附物在完全氘化的C_16基质中逐渐稀释后,完全氢化的Ci6的CH谱带的几个波数向更高的频率偏移,这表明所有谱带都受到分子间的耦合。表明与亚甲基拉伸模式相关的振动频率的温度依赖性主要是由于分子间的耦合因此,与甲基末端相关的振动的温度依赖性主要归因于分子内偶联。建议同位素稀释的单分子层的高度受限的几何形状可能会提供对低频模式的分子内偶联较不敏感的环境比尿素clathrate分离的物种。

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