Department of Material Sciences and CNR-INFM, University of Milano-Bicocca, Via R. Cozzi 53, I-2012 Milano, Italy.
J Chem Phys. 2010 Jan 14;132(2):024504. doi: 10.1063/1.3280070.
We have investigated the mechanism of exciton-exciton annihilation in organic lanthanide complexes by measuring the excitation density dependence of photoluminescence yield in neat films of a model europium chelate. The observed luminescence efficiency reduction at high excitation intensities has been attributed to the operation of the mutual annihilation of the ligand singlet excitons. The second order interaction rate constant, the exciton diffusivity, and the singlet exciton diffusion length in this material have been determined. These results were used to evaluate the role of exciton annihilation in organic light emitting diodes, lanthanide-based organic lasers, and light up-converters. Indications concerning the optimization of the performances of such devices have also been given.
我们通过测量模型铕螯合物纯膜中光致发光产率的激发密度依赖性,研究了有机镧系配合物中激子-激子湮灭的机制。在高激发强度下观察到的发光效率降低归因于配体单重态激子的相互湮灭。该材料的二阶相互作用速率常数、激子扩散系数和单重态激子扩散长度已被确定。这些结果被用于评估激子湮灭在有机发光二极管、基于镧系元素的有机激光器和上转换发光中的作用。还给出了优化此类器件性能的指示。