首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Long-range exciton transport in brightly fluorescent furan/phenylene co-oligomer crystals
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Long-range exciton transport in brightly fluorescent furan/phenylene co-oligomer crystals

机译:在明亮的荧光呋喃/亚苯基共聚体晶体中的远程激子输送

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摘要

The design of light-emitting crystalline organic semiconductors for optoelectronic applications requires a thorough understanding of the singlet exciton transport process. In this study, we show that the singlet exciton diffusion length in a promising semiconductor crystal based on furan/phenylene co-oligomers is 24 nm. To achieve this, we employed the photoluminescence quenching technique using a specially synthesized quencher, which is a long furan/phenylene co-oligomer that was facilely implanted into the host crystal lattice. Extensive Monte-Carlo simulations, exciton-exciton annihilation experiments and numerical modelling fully supported our findings. We further demonstrated the high potential of the furan/phenylene co-oligomer crystals for light-emitting applications by fabricating solution-processed organic light emitting transistors.
机译:用于光电应用的发光晶体有机半导体的设计需要彻底了解单线交激子运输过程。 在这项研究中,我们表明,基于呋喃/亚苯基共聚体的有前途半导体晶体中的单线子激子扩散长度为24nm。 为此,我们使用特殊合成的猝灭剂使用光致发光猝灭技术,这是一种长呋喃/亚苯基共聚体,其植入宿主晶格中。 广泛的Monte-Carlo模拟,Exciton-Exciton湮灭实验和数值模型完全支持我们的研究结果。 我们进一步证明了通过制造溶液处理的有机发光晶体管来发光应用的呋喃/亚苯基共聚体晶体的高潜力。

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