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Influence of Disassociation Probability on External Quantum Efficiency in Organic Electrophosphorescent Devices

机译:解离概率对有机电致磷光器件中外部量子效率的影响

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摘要

An analytical model is presented to calculate the disassociation probability and the external quantum efficiency at high field in doped organic electrophosphorescence(EPH) devices. The charge recombination process and the triplet(T)-triplet(T) annihilation processes are taken into account in this model. The influences of applied voltage and the thickness of the device on the disassociation probability, and of current density and the thickness of the device on the external quantum efficiency are studied thoroughly by including and ignoring the disassociation of excitons. It is found that the dissociation probability of excitons will come close to 1 at high electric field, and the external EPH quantum efficiency is almost the same at low electric field. There is a large discrepancy of the external EPH quantum efficiency at high electric field for including or ignoring the disassociation of excitons.
机译:提出了一个解析模型来计算掺杂有机电致发光(EPH)器件在高场下的解离概率和外部量子效率。该模型考虑了电荷复合过程和三重态(T)-三重态(T)的an灭过程。通过包括和忽略激子的解离,彻底研究了施加电压和器件厚度对解离概率的影响,以及电流密度和器件厚度对外部量子效率的影响。发现在高电场下激子的离解几率接近1,在低电场下外部EPH量子效率几乎相同。在高电场下,包含或忽略激子解离的外部EPH量子效率存在很大差异。

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