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首页> 外文期刊>Journal of Luminescence >Ultrafast relaxation dynamics of electrons in Au clusters capped with dodecanethiol molecules
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Ultrafast relaxation dynamics of electrons in Au clusters capped with dodecanethiol molecules

机译:十二烷硫醇分子包覆的金团簇中电子的超快弛豫动力学

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We have investigated electron relaxation dynamics of size-selected Au clusters capped by dodecanethiol molecules in the cluster sizes of 28—142 atoms using femtosecond pump-probe spectroscopy. Absorption spectra of 28-71-atom clusters show discrete peaks due to the optical transitions between quantized states, while an absorption band due to the surface plasmon is observed in 142-atom clusters. In the differential absorption spectra measured by the pump-probe experiments, a large redshift of 140 meV lasting over 10 ps and absorption bleaching decaying within 2ps are observed at the absorption peaks of 28-atom clusters. The redshift is ascribed to a charge transfer between Au clusters and dodecanethiol molecules adsorbed on the cluster surface, and the bleaching is due to blocking of the optical transitions between the ground state and the occupied electronic states due to the Pauli's-exclusion principle. Such behavior is in contrast to the 142-atom clusters, where the cooling of hot electrons generated by photo-excitation determines the relaxation dynamics. These results indicate molecular properties of the 28-atom Au cluster-dodecanethiol system.
机译:我们使用飞秒泵浦探针光谱技术研究了尺寸选择的Au簇的电子弛豫动力学,该簇由十二烷硫醇分子封顶,簇尺寸为28-142个原子。 28-71个原子簇的吸收光谱显示由于量子态之间的光学跃迁而产生的离散峰,而在142个原子簇中观察到由于表面等离子体激元引起的吸收带。在通过泵浦探针实验测量的差分吸收光谱中,在28个原子簇的吸收峰处观察到140 meV的大红移持续超过10 ps,吸收漂白衰减在2 ps之内。红移归因于金簇和吸附在簇表面上的十二烷硫醇分子之间的电荷转移,并且漂白是由于泡利排斥原理而阻止了基态和占据电子态之间的光学跃迁。这种行为与142个原子团簇相反,后者通过光激发产生的热电子冷却决定了弛豫动力学。这些结果表明28原子Au簇-十二烷硫醇体系的分子性质。

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