Yago Tomoaki, Tamaki Yoshiaki, Furube Akihiro, Katoh Ryuzi
National Institute of Advanced Industrial Science and Technology, Tsukuba Central 5, 1-1-1 Higashi, Tsukuba, Ibaraki, 305-8565, Japan.
Phys Chem Chem Phys. 2008 Aug 14;10(30):4435-41. doi: 10.1039/b801856a. Epub 2008 Jun 6.
Self-trapping and singlet-singlet annihilation of the free excitons in a monomeric (beta) perylene crystal were studied by using femtosecond transient absorption microscopy. The free exciton generated by the photo-excitation of the beta-perylene crystal relaxed to the self-trapped exciton with a rate constant of 7 x 10(10) s(-1). The singlet-singlet annihilation of the free exciton observed under the high excitation density conditions was competed with the self-trapping of the free exciton; we estimated the annihilation rate constant for the free exciton to be 1 x 10(-8) cm(3) s(-1) from the excitation density dependence of the free exciton decay. After self-trapping of the free exciton, no annihilation was observed in the 100 ps time range, suggesting that the diffusion coefficient was reduced drastically by self-trapping. The results show that the major factor limiting the exciton diffusion in the beta-perylene crystal is a relaxation of the free exciton to the self-trapped exciton, and not the lifetime of the exciton. Though the singlet-singlet annihilation rate constants and fluorescence lifetime of the beta-perylene crystal are similar to those of the anthracene crystal, the estimated exciton diffusion length (2 nm) in the beta-perylene crystal is much smaller than that (100 nm) in the anthracene crystal as a result of the exciton self-trapping.
利用飞秒瞬态吸收显微镜研究了单体(β)苝晶体中自由激子的自陷和单重态-单重态湮灭。通过对β-苝晶体进行光激发产生的自由激子以7×10¹⁰ s⁻¹的速率常数弛豫为自陷激子。在高激发密度条件下观察到的自由激子的单重态-单重态湮灭与自由激子的自陷相互竞争;根据自由激子衰减对激发密度的依赖性,我们估计自由激子的湮灭速率常数为1×10⁻⁸ cm³ s⁻¹。自由激子自陷后,在100 ps时间范围内未观察到湮灭现象,这表明自陷使扩散系数急剧降低。结果表明,限制β-苝晶体中激子扩散的主要因素是自由激子弛豫为自陷激子,而不是激子的寿命。尽管β-苝晶体的单重态-单重态湮灭速率常数和荧光寿命与蒽晶体的相似,但由于激子自陷,β-苝晶体中估计的激子扩散长度(2 nm)远小于蒽晶体中的(100 nm)。