Institute for Solid State Physics, The University of Tokyo, Kashiwanoha 5-1-5, Kashiwa-shi, 277-8581 Chiba, Japan.
J Chem Phys. 2011 Jun 14;134(22):224503. doi: 10.1063/1.3595264.
The out-of-phase and in-phase ladder type Br-bridged Pt complexes are investigated by time-resolved luminescence spectroscopy in pico- and femtosecond time regions. The observed luminescence spectra have peaks at 0.87 and 0.94 eV in out-of-phase and in-phase materials, respectively, and are assigned to self-trapped excitons. The wave-packet oscillations in self-trapped excitons (STE) are observed in both materials. The time-evolution curves are analyzed in terms of the secondary radiation theory of strongly coupled electron-phonon system. The period and dephasing time of oscillations as well as the lifetime and spectral shape of the STE luminescence are determined. The fast dephasing or cooling of the wave-packet motion observed in the in-phase type complex is ascribed to inter-chain interactions within the ladder.
本文采用皮秒和飞秒时间分辨荧光光谱法研究了非相和同相梯型 Br 桥联 Pt 配合物。在非相和同相材料中,观察到的荧光光谱分别在 0.87 和 0.94 eV 处有峰,分别归因于自陷激子。在两种材料中都观察到自陷激子(STE)中的波包振荡。通过强耦合电子-声子体系的二次辐射理论分析了时间演化曲线。确定了振荡的周期和退相时间以及 STE 发光的寿命和光谱形状。同相型配合物中观察到的波包运动的快速退相或冷却归因于梯型内的链间相互作用。