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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Thermal desorption of chiral molecules from a nanostructured chiral surface: Insights from computer simulations
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Thermal desorption of chiral molecules from a nanostructured chiral surface: Insights from computer simulations

机译:从纳米结构手性表面上热解吸手性分子:计算机模拟的见解

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摘要

Temperature programmed desorption (TPD) of model chiral molecules from a chiral surface with periodic pattern of active sites was studied theoretically using the Monte Carlo method. The simulations were performed for enantiomerically pure and racemic layers adsorbed on the chiral surface with an ordered (root 5 x root 5)R27 degrees superstructure of the active sites. It was demonstrated that an efficient separation of the enantiomers on the nanostructured surface could be achieved by suitable manipulating energetic properties of the surface. Moreover, the influence of factors such as lateral interactions in the adsorbed phase and mobility of the adsorbed molecules oil the desorption kinetics was examined. The obtained results provided some insights into the mechanism of chiral selection with nanostructured Surfaces under ultra high Vacuum conditions. In particular, it was demonstrated that effectiveness of the separation decreases with coverage due to reduced chances for the enantiomers to occupy their energetically preferred Clusters of adsorption sites.
机译:理论上使用蒙特卡罗方法研究了具有手性表面周期性图案的手性表面模型手性分子的程序升温脱附(TPD)。对吸附在手性表面上的对映体纯和消旋层进行了模拟,其中活性位点的有序(根5 x根5)R27度超结构。已经证明,可以通过适当控制表面的能量性质来实现纳米结构表面上对映体的有效分离。此外,研究了诸如吸附相中的横向相互作用和吸附分子的迁移率等因素对解吸动力学的影响。获得的结果为超高真空条件下纳米结构表面的手性选择机理提供了一些见识。特别地,已经证明,由于对映异构体占据其能量上优选的吸附位点簇的机会减少,所以分离的有效性随着覆盖率而降低。

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