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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Energy Gap between Photoluminescence and Electroluminescence as Recombination Indicator in Organic Small-Molecule Photodiodes
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Energy Gap between Photoluminescence and Electroluminescence as Recombination Indicator in Organic Small-Molecule Photodiodes

机译:有机小分子光电二极管中光致发光和电致发光之间的能隙作为复合指示剂

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Charge transfer (CT) states at the donor-acceptor interfaces play an important role in organic optoelectronic devices, yielding photocarrier generation or recombination losses. In this study, we fabricate and characterize vacuum-deposited organic photodiodes (OPDs) composed of SubPc:C60 with various active-layer thicknesses and mixing ratios in terms of the charge separation efficiency (CSE) and charge collection efficiency (CCE). We demonstrate that the combined field-assisted quenching study using both photoluminescence (PL) and electroluminescence (EL) reveals detailed information on the device physics of bulk heterojunction photodiodes as related to the CT state. Our modified PL quenching efficiency approach allows us to reasonably evaluate the CSE. In addition, we find that the EL energy is closely related to the recombination loss factor, and the energy gap between PL and EL exhibits a strong linear relationship with the CCE. As a result, the energy gap is proved to be a meaningful indicator of the carrier transport properties, which allows prediction of the CCE in organic bulk heterojunctions.
机译:供体-受体界面处的电荷转移(CT)状态在有机光电器件中起重要作用,产生光载流子产生或复合损失。在这项研究中,我们制造和表征由SubPc:C60组成的真空沉积有机光电二极管(OPD),其具有不同的活性层厚度和混合比,这取决于电荷分离效率(CSE)和电荷收集效率(CCE)。我们证明使用光致发光(PL)和电致发光(EL)的组合的场辅助猝灭研究揭示了与CT状态相关的本体异质结光电二极管器件物理的详细信息。我们改良的PL淬灭效率方法使我们能够合理地评估CSE。另外,我们发现EL能量与重组损失因子密切相关,并且PL和EL之间的能隙与CCE表现出很强的线性关系。结果,能隙被证明是载流子传输性质的有意义的指示,这允许预测有机体异质结中的CCE。

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