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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Molecular dynamics Simulations of alkanethiol monolayers with azobenzene molecules on the au(111) surface
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Molecular dynamics Simulations of alkanethiol monolayers with azobenzene molecules on the au(111) surface

机译:au(111)表面上带有偶氮苯分子的烷硫醇单分子层的分子动力学模拟

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Azobenzene derivatives have potential applications as optomechanical devices and molecular switches. The fabrication of such devices requires attachment of selected molecules to macroscopic surfaces or leads. In this work, we consider heterogeneous systems consisting of a host alkanethiol (dodecanethiol) monolayer with thiol-terminated azobenzene molecules on the Au(111) surface. Studies of the structure and dynamics of the system using classical molecular dynamics simulations reveal a phase transition that is characterized by changes in the tilt angle, heat capacity, and diffusion constant of the host molecules. The results for the pure monolayer are compared to the corresponding heterogeneous systems containing the cis and trans isomers of azobenzene. The temperature dependence of the structure and dynamics of the monolayers is analyzed in detail. Finally, we discuss the implications of our results for the interpretation of recent experiments.
机译:偶氮苯衍生物作为光机械装置和分子开关具有潜在的应用。这种装置的制造需要将选定的分子附着到宏观表面或引线上。在这项工作中,我们考虑了由主体烷硫醇(十二烷硫醇)单层与Au(111)表面上的巯基封端的偶氮苯分子组成的异质系统。使用经典的分子动力学模拟对系统的结构和动力学进行的研究表明,相转变的特征在于主体分子的倾斜角,热容量和扩散常数的变化。将纯单层的结果与包含偶氮苯的顺式和反式异构体的相应异质体系进行比较。详细分析了单层结构的温度依赖性和动力学。最后,我们讨论了我们的结果对最新实验的解释的含义。

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