The magnetic filed effect of the singlet fission reaction in polycrystalline tetracene-based diodes

Tzung‐Fang Guo, Shifeng Lou, Wei-Cheng Liu, Chien-Chih Wu
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引用次数: 1

Abstract

We characterize the magneto photocurrent (MPC) response in polycrystalline tetracene-based diodes and magneto photoluminescence of the tetracene film and attribute the initially decreasing and then increasing MPC responses to the feature of the singlet fission (SF) reaction. The SF reaction in polycrystalline tetracene active layer is more evident when the device was irradiated with the short wavelength of irradiation. This observation indicates a possible route to utilize the excess exciting energy for the generation of extra excited states (triplet) to contribute the higher photocurrent. Additionally, through the measurement of magneto electroluminescence of tetracene-based diodes operated under the forward bias regime, we are able to characterize the reaction of triplet-triplet annihilation (TTA) to harvest the energy from triplet to singlet excitons in part contribute the emission of fluorescence especially in the high current density and low temperature regime.
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多晶四烯基二极管单线态裂变反应的磁场效应
研究了多晶四烯基二极管的磁光电流(MPC)响应和四烯薄膜的磁光致发光特性,并将MPC响应的先减小后增大归因于单线态裂变(SF)反应的特征。在短波长的辐照下,多晶四烯活性层中的SF反应更为明显。这一观察结果表明了利用多余的激发态能量产生额外激发态(三重态)来贡献更高光电流的可能途径。此外,通过测量四烯基二极管在正向偏压下的磁致电致发光,我们能够表征三重态-三重态湮灭(TTA)反应,以收集三重态到单重态激子的能量,部分贡献了荧光的发射,特别是在高电流密度和低温状态下。
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Front Matter: Volume 11808 Light Manipulation of Photonic-Structured OLEDs Perovskite LEDs Directional polarized light emission from thin-film light emitting diodes Blue perovskite light emitting diodes
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