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首页> 外文期刊>Angewandte Chemie >Optical Spectroscopy of the Au-4(+) Cluster: The Resolved Vibronic Structure Indicates an Unexpected Isomer
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Optical Spectroscopy of the Au-4(+) Cluster: The Resolved Vibronic Structure Indicates an Unexpected Isomer

机译:AU-4(+)簇的光学光谱:已解析的颤音结构表示意外的异构体

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摘要

Knowledge of the geometric and electronic structure of gold clusters and nanoparticles is vital for understanding their catalytic and photochemical properties at the molecular level. In this study, we report the vibronic optical photodissociation spectrum of cold and mass-selected Au-4(+) clusters measured at a resolution high enough to allow for comparison with Franck-Condon simulations of the excited state transitions based on time-dependent density functional theory calculations. The three vibrational frequencies identified for the lowest-lying optically accessible excited state at 2.17 eV stem from the Y-shaped isomer (C-2v) and not from the rhombic isomer (D-2h) considered to be the ground state structure of Au-4(+). This study demonstrates that an analysis of low-resolution electronic spectra by calculations of vertical transitions alone is not sufficient for a reliable isomer assignment of such metal clusters.
机译:知识金簇和纳米粒子的几何和电子结构对于了解分子水平的催化和光化学性能至关重要。 在这项研究中,我们报告了在足够高的分辨率下测量的冷和质量选择的Au-4(+)簇的振动光学光学光度分离谱,以允许基于时间依赖性密度与激发态转换的Franck-Condon模拟相比 功能理论计算。 用于在2.17 EV源自Y形异构体(C-2V)的最低次光学可接近激发态的三种振动频率,而不是由被认为是Au-的地态结构的菱形异构体(D-2H)。 4(+)。 该研究表明,通过单独计算垂直转变的计算对低分辨率电子光谱的分析是不可能的这种金属簇的可靠性异构体分配。

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