Karam Tony E, Khoury Rami A, Haber Louis H
Department of Chemistry, Louisiana State University, Baton Rouge, Louisiana 70803, USA.
J Chem Phys. 2016 Mar 28;144(12):124704. doi: 10.1063/1.4944385.
The ultrafast excited-state dynamics of size-dependent TiO2-Au nanocomposites synthesized by reducing gold nanoclusters to the surface of colloidal TiO2 nanoparticles are studied using pump-probe transient absorption spectroscopy with 400 nm excitation pulses. The results show that the relaxation processes of the plasmon depletion band, which are described by electron-phonon and phonon-phonon scattering lifetimes, are independent of the gold nanocluster shell size surrounding the TiO2 nanoparticle core. The dynamics corresponding to interfacial electron transfer between the gold nanoclusters and the TiO2 bandgap are observed to spectrally overlap with the gold interband transition signal, and the electron transfer lifetimes are shown to significantly decrease as the nanocluster shell size increases. Additionally, size-dependent periodic oscillations are observed and are attributed to acoustic phonons of a porous shell composed of aggregated gold nanoclusters around the TiO2 core, with frequencies that decrease and damping times that remain constant as the nanocluster shell size increases. These results are important for the development of improved catalytic nanomaterial applications.
利用400nm激发脉冲的泵浦-探测瞬态吸收光谱法,研究了通过将金纳米团簇还原到胶体TiO2纳米颗粒表面而合成的尺寸依赖性TiO2-Au纳米复合材料的超快激发态动力学。结果表明,由电子-声子和声子-声子散射寿命描述的等离子体耗尽带的弛豫过程与围绕TiO2纳米颗粒核的金纳米团簇壳层尺寸无关。观察到与金纳米团簇和TiO2带隙之间的界面电子转移相对应的动力学在光谱上与金带间跃迁信号重叠,并且电子转移寿命显示随着纳米团簇壳层尺寸的增加而显著降低。此外,观察到尺寸依赖性的周期性振荡,这归因于由围绕TiO2核的聚集金纳米团簇组成的多孔壳层的声子,其频率随着纳米团簇壳层尺寸的增加而降低,而阻尼时间保持恒定。这些结果对于改进催化纳米材料应用的开发具有重要意义。