Center for Advanced Microstructures and Devices (CAMD), Louisiana State University, Baton Rouge, LA 70806, USA.
Chemistry. 2013 Jul 29;19(31):10201-8. doi: 10.1002/chem.201300600. Epub 2013 Jun 20.
We present results from our investigations into correlating the styrene-oxidation catalysis of atomically precise mixed-ligand biicosahedral-structure Au25(PPh3)10(SC12H25)5Cl2 (Au25-bi) and thiol-stabilized icosahedral core-shell-structure Au25(SCH2CH2Ph)18 (Au25-i) clusters with their electronic and atomic structure by using a combination of synchrotron radiation-based X-ray absorption fine-structure spectroscopy (XAFS) and ultraviolet photoemission spectroscopy (UPS). Compared to bulk Au, XAFS revealed low Au-Au coordination, Au-Au bond contraction and higher d-band vacancies in both the ligand-stabilized Au clusters. The ligands were found not only to act as colloidal stabilizers, but also as d-band electron acceptor for Au atoms. Au25-bi clusters have a higher first-shell Au coordination number than Au25-i, whereas Au25-bi and Au25-i clusters have the same number of Au atoms. The UPS revealed a trend of narrower d-band width, with apparent d-band spin-orbit splitting and higher binding energy of d-band center position for Au25-bi and Au25-i. We propose that the differences in their d-band unoccupied state population are likely to be responsible for differences in their catalytic activity and selectivity. The findings reported herein help to understand the catalysis of atomically precise ligand-stabilized metal clusters by correlating their atomic or electronic properties with catalytic activity.
我们展示了通过同步辐射 X 射线吸收精细结构光谱 (XAFS) 和紫外光电子能谱 (UPS) 相结合,研究原子精确混合配体双二十面体结构 Au25(PPh3)10(SC12H25)5Cl2 (Au25-bi) 和巯基稳定的二十面体核壳结构 Au25(SCH2CH2Ph)18 (Au25-i) 簇的电子和原子结构与苯乙烯氧化催化之间的相关性的结果。与块状 Au 相比,XAFS 揭示了配体稳定的 Au 簇中低的 Au-Au 配位、Au-Au 键收缩和更高的 d 带空位。发现配体不仅作为胶体稳定剂,而且作为 Au 原子的 d 带电子受体。Au25-bi 簇的第一壳层 Au 配位数高于 Au25-i,而 Au25-bi 和 Au25-i 簇具有相同数量的 Au 原子。UPS 显示出 d 带宽度变窄的趋势,d 带自旋轨道分裂明显,d 带中心位置的结合能升高。我们提出,它们的 d 带空态占据数的差异可能是导致它们催化活性和选择性差异的原因。本报告中的发现有助于通过将原子或电子性质与催化活性相关联来理解原子精确配体稳定金属簇的催化作用。