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Highly efficient spin-conversion effect leading to energy up-converted electroluminescence in singlet fission photovoltaics

机译:高效自旋转换效应导致单线裂变光伏中能量上转换的电致发光

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摘要

Free charge generation in donor-acceptor (D-A) based organic photovoltaic diodes (OPV) progresses through formation of charge-transfer (CT) and charge-separated (CS) states and excitation decay to the triplet level is considered as a terminal loss. On the other hand a direct excitation decay to the triplet state is beneficial for multiexciton harvesting in singlet fission photovoltaics (SF-PV) and the formation of CT-state is considered as a limiting factor for multiple triplet harvesting. These two extremes when present in a D-A system are expected to provide important insights into the mechanism of free charge generation and spin-character of bimolecular recombination in OPVs. Herein, we present the complete cycle of events linked to spin conversion in the model OPV system of rubrene/C60. By tracking the spectral evolution of photocurrent generation at short-circuit and close to open-circuit conditions we are able to capture spectral changes to photocurrent that reveal the triplet character of CT-state. Furthermore, we unveil an energy up-conversion effect that sets in as a consequence of triplet population build-up where triplet-triplet annihilation (TTA) process effectively regenerates the singlet excitation. This detailed balance is shown to enable a rare event of photon emission just above the open-circuit voltage (VOC) in OPVs.
机译:在基于供体-受体(D-A)的有机光电二极管(OPV)中,自由电荷的生成通过电荷转移(CT)和电荷分离(CS)态的形成而进行,并且激发衰减到三重态水平被视为终端损耗。另一方面,直接激发衰减到三重态有利于单重裂变光伏(SF-PV)中的多激子收获,CT状态的形成被认为是多重三重态收获的限制因素。当存在于D-A系统中时,这两个极端现象有望为OPV中的自由电荷产生和双分子重组的自旋特征机理提供重要的见识。在这里,我们介绍了与红荧烯/ C60模型OPV系统中的自旋转换有关的事件的完整周期。通过跟踪在短路和接近开路条件下产生的光电流的光谱演化,我们能够捕获光电流的光谱变化,从而揭示CT状态的三重态特征。此外,我们揭示了一种能量上转换效应,这种效应是由于三重态人口聚集而产生的,其中三重态-三重态an灭(TTA)过程有效地再生了单重态激发。显示出这种详细的平衡使得在OPV中恰好在开路电压(VOC)之上发生罕见的光子发射事件。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Ajay K. Pandey;

  • 作者单位
  • 年(卷),期 -1(5),-1
  • 年度 -1
  • 页码 7787
  • 总页数 6
  • 原文格式 PDF
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