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首页> 外文期刊>Nanoscale >Elucidating ligand effects in thiolate-protected metal clusters using Au24Pt(TBBT)(18) as a model cluster
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Elucidating ligand effects in thiolate-protected metal clusters using Au24Pt(TBBT)(18) as a model cluster

机译:阐明在thiolate-protected配体的影响金属集群使用Au24Pt (TBBT)(18)作为模型集群

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2-Phenylethanethiolate (PET) and 4-tert-butylbenzenethiolate (TBBT) are the most frequently used ligands in the study of thiolate (SR)-protected metal clusters. However, the effect of difference in the functional group between these ligands on the fundamental properties of the clusters has not been clarified. We synthesized [Au24Pt(TBBT)(18)](0), which has the same number of metal atoms, number of ligands, and framework structure as [Au24Pt(PET)(18)](0), by replacing ligands of [Au24Pt(PET)(18)](0) with TBBT. It was found that this ligand exchange is reversible unlike the case of other metal-core clusters. A comparison of the geometrical/electronic structure and stability of the clusters between [Au24Pt(PET)(18)](0) and [Au24Pt(TBBT)(18)](0) revealed three things with regard to the effect of ligand change from PET to TBBT on [Au24Pt(SR)(18)](0): (1) the induction of metal-core contraction and Au-S bond elongation, (2) no substantial effect on the HOMO-LUMO gap but a clear difference in optical absorption in the visible region, and (3) the decrease of stabilities against degradation in solution and under laser irradiation. By using these two clusters as model clusters, it is expected that the effects of the structural difference of ligand functional-groups on the physical properties and functions of clusters, such as catalytic ability and photoluminescence, would be clarified.
机译:2-Phenylethanethiolate (PET)4-tert-butylbenzenethiolate (TBBT)是最常用的配体在硫醇盐的研究(SR)保护金属集群。不同官能团的影响这些配体之间的根本集群没有的属性澄清。相同数量的金属原子,号码吗配体和框架结构[Au24Pt (PET)(18)](0),以取代配体[Au24Pt (PET)(18)]与TBBT(0)。这个配体交换是可逆的不同其他金属芯的集群。电子结构和几何/稳定之间的集群[Au24Pt (PET)(18)](0)和[Au24Pt (TBBT) (18)] (0)发现三件事的影响从宠物TBBT在配体的变化[Au24Pt (SR)(18)](0):(1)的感应金属芯收缩和Au-S债券伸长,(2)对HOMO-LUMO差距没有实质性的影响但在光学吸收有着明显的差别可见区域,和(3)的减少稳定性与在溶液中降解在激光辐照。集群作为模型的集群,它预计的结构差异的影响配位官能团在物理上集群的属性和功能,如催化能力,光致发光澄清。

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