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Optically excited acoustic vibrations in quantum-sized monolayer-protected gold clusters

机译:量子大小的单层保护金团簇中的光激发声振动

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摘要

We report a systematic investigation of the optically excited vibrations in monolayer-protected gold clusters capped with hexane thiolate as a function of the particle size in the range of 1.1-4 nm. The vibrations were excited and monitored in transient absorption experiments involving 50 fs light pulses. For small quantum-sized clusters (≤2.2 nm), the frequency of these vibrations has been found to be independent of cluster size, while for larger clusters (3 and 4 nm), we did not observe detectable optically excited vibrations in this regime. Possible mechanisms of excitation and detection of the vibrations in nanoclusters in the course of the transient absorption are discussed. The results of the current investigation support a displacive excitation mechanism associated with the presence of finite optical energy gap in the quantum-sized nanoclusters. Observed vibrations provide a new valuable diagnostic tool for the investigations of quantum size effects and structural studies in metal nanoclusters.
机译:我们报告了光学上的振动,在单层保护的金簇中,被硫醇己烷封端的光激发振动作为粒度在1.1-4 nm范围内的函数。在涉及50 fs光脉冲的瞬态吸收实验中激发并监测了振动。对于较小的量子大小的簇(≤2.2nm),已发现这些振动的频率与簇的大小无关,而对于较大的簇(3和4 nm),我们在这种情况下未观察到可检测到的光激发振动。讨论了在瞬态吸收过程中激发和检测纳米团簇振动的可能机理。当前研究的结果支持了与量子大小的纳米团簇中有限光能隙的存在相关的位移激发机制。观察到的振动为研究金属纳米团簇的量子尺寸效应和结构研究提供了一种新的有价值的诊断工具。

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