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Non-adiabatic molecular dynamic simulations of opening reaction of molecular junctions

机译:分子键打开反应的非绝热分子动力学模拟

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We report non-adiabatic molecular dynamic simulations of the ring opening reaction of diarylethene (DAE) derivative molecules, both free standing and embedded between gold electrodes. Simulations are performed by the surface hopping method employing density functional theory. Typically, the free-standing molecules exhibit large quantum yields to open and close; however the process is quenched for the molecules embedded between electrodes. Our simulations reveal the importance of the DAE side chemical groups, which explain the efficiency of the quenching process. Namely, delocalization of the LUMO state contributes to electronic coupling between the molecule and electrodes, suppressing or enhancing the reaction process. The simulations indicate that a proper choice of the chemical side group, which provides the strong localization of the LUMO state, can substantially diminish the quenching mechanism. Additionally, we analyze a strong dependency of the quantum yield of the opening reaction coming from the mechanical strength of the molecules.
机译:我们报告了二芳基乙烯(DAE)衍生物分子的开环反应的非绝热分子动力学模拟,这两个反应都是独立的,并且嵌入在金电极之间。通过采用密度泛函理论的表面跳变方法进行模拟。典型地,独立分子表现出大的量子产率以打开和关闭。然而,对于嵌入电极之间的分子,该过程被淬灭了。我们的模拟揭示了DAE侧化学基团的重要性,这说明了淬灭过程的效率。即,LUMO状态的离域化有助于分子与电极之间的电子偶联,从而抑制或增强了反应过程。模拟表明,化学侧基,这提供了LUMO状态的强局部化的适当选择,可以基本上减少的猝灭机制。此外,我们分析了分子的机械强度对打开反应的量子产率的强烈依赖性。

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