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Systematically Tuning the Electronic Structure of Gold Nanoclusters through Ligand Derivatization

机译:通过配体衍生化系统地调整金纳米蛋白的电子结构

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摘要

While the ability to crystallize metal nanoclusters has revealed their geometric structure, the lack of a similarly precise measure of their electronic structure has hampered the development of synthetic design rules to precisely engineer their electronic properties. We track the evolution of highly-resolved electronic absorption spectra of gold nanoclusters with precisely mass-selected chemical composition in a controlled environment. Simple derivatization of the ligands yields larger spectral changes than varying the overall atomic composition of the cluster for two clusters with similar symmetry and size. The nominally metal-localized HOMO-LUMO transition of these nanoclusters lowers in energy linearly with increasing electron donation from the exterior of the ligand shell for both cluster sizes. Very weak surface interactions, such as binding of He or N-2, yield significant state-dependent shifts, identifying states with significant interfacial character. These observations demonstrate a pathway for deliberate tuning of interfacial chemistry for chemical and technological applications.
机译:虽然结晶金属纳米团簇的能力揭示了它们的几何结构,但缺乏类似精确的电子结构测量,阻碍了合成设计规则的开发,以精确地工程成为电子特性。我们在受控环境中追踪金纳米蛋白的高分辨率电子吸收光谱的演变,在受控环境中精确选择化学成分。配体的简单衍生化产生的光谱变化较大,而不是改变簇的总体原子组成,对于具有类似对称和尺寸的两个簇。这些纳米能器的名义上是金属局部化的HOMO-LUMO-LUMO-LUMO-LUMO-LUMO-LUMO转变在能量线性的情况下,从配体壳的外部增加电子捐赠,用于两个簇尺寸。表面相互作用非常弱,例如他或N-2的结合,产生显着的状态依赖性变化,鉴定具有显着界面性质的状态。这些观察结果证明了一种倾向于调整化学和技术应用的界面化学的途径。

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