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配体保护金团簇的太赫兹拉曼光谱

Terahertz Raman Spectroscopy of Ligand-Protected Au Clusters.

作者信息

Kato Masaru, Shichibu Yukatsu, Ogura Kazuya, Iwasaki Mitsuhiro, Sugiuchi Mizuho, Konishi Katsuaki, Yagi Ichizo

出版信息

J Phys Chem Lett. 2020 Oct 1;11(19):7996-8001. doi: 10.1021/acs.jpclett.0c02227. Epub 2020 Sep 10.

Abstract

For ligand-protected gold clusters, geometrical differences of gold cores and/or the presence of secondary gold core-ligand interactions influence their unique optical and electronic properties and can, in principle, be detected by spectral changes of gold core vibrations (phonon modes) in ultralow-frequency Raman spectroscopy. We report experimental and theoretical Raman spectra of Au clusters protected by phosphine ligands particularly in the "gold cluster fingerprint" region from 50 to 150 cm Raman shift (1.5 to 4.5 terahertz, THz). A characteristic core breathing mode observed at ca. 123 cm was sensitive to differences of core geometries. A new band was found at ca. 150 cm, originating from a local strain on a polyhedral gold core caused by weak Au···π interactions. THz Raman spectroscopy can be utilized for metal nanoclusters to visualize core structural changes and Au···π interactions, which cannot be captured by single crystal X-ray analysis.

摘要

对于配体保护的金团簇,金核的几何差异和/或二次金核 - 配体相互作用的存在会影响其独特的光学和电子性质,原则上可以通过超低频拉曼光谱中金核振动(声子模式)的光谱变化来检测。我们报告了由膦配体保护的金团簇的实验和理论拉曼光谱,特别是在50至150厘米拉曼位移(1.5至4.5太赫兹,THz)的“金团簇指纹”区域。在约123厘米处观察到的特征性核呼吸模式对核几何形状的差异敏感。在约150厘米处发现了一个新带,它源于多面体金核上由弱Au···π相互作用引起的局部应变。太赫兹拉曼光谱可用于金属纳米团簇,以可视化核心结构变化和Au···π相互作用,这是单晶X射线分析无法捕捉到的。

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