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Optically tunable spin-exchange energy at donor:acceptor interfaces in organic solar cells

机译:有机太阳能电池中供体:受体界面的光可调自旋交换能量

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摘要

Spin-exchange energy is a critical parameter in controlling spin-dependent optic, electronic, and magnetic properties in organic materials. This article reports optically tunable spin-exchange energy by studying the line-shape characteristics in magnetic field effect of photocurrent developed from intermolecular charge-transfer states based on donor:acceptor (P3HT:PCBM) system. Specifically, we divide magnetic field effect of photocurrent into hyperfine (at low field < 10 mT) and spin-exchange (at high field > 10 mT) regimes. We observe that increasing photoexcitation intensity can lead to a significant line-shape narrowing in magnetic field effect of photocurrent occurring at the spin-exchange regime. We analyze that the line-shape characteristics is essentially determined by the changing rate of magnetic field-dependent singlet/triplet ratio when a magnetic field perturbs the singlet-triplet transition through spin mixing. Based on our analysis, the line-shape narrowing results indicate that the spin-exchange energy at D:A interfaces can be optically changed by changing photoexcitation intensity through the interactions between intermolecular charge-transfer states. Therefore, our experimental results demonstrate an optical approach to change the spin-exchange energy through the interactions between intermolecular charge-transfer states at donor:acceptor interface in organic materials.
机译:自旋交换能量是控制有机材料中自旋相关的光学,电子和磁性性质的关键参数。本文通过研究基于施主:受主(P3HT:PCBM)系统的分子间电荷转移状态产生的光电流的磁场效应中的线形特征,来报告光可调自旋交换能量。具体来说,我们将光电流的磁场效应分为超精细(低场<10 mT)和自旋交换(高场> 10 mT)两种。我们观察到,增加光激发强度会导致自旋交换状态下发生的光电流的磁场效应出现明显的线状变窄。我们分析,线形特征基本上由磁场干扰单峰/三重态比通过旋转混合扰动单峰-三重态转变的速率决定。根据我们的分析,线形变窄的结果表明,通过分子间电荷转移态之间的相互作用改变光激发强度,可以使D:A界面的自旋交换能量发生光学变化。因此,我们的实验结果证明了一种通过有机材料中供体:受体界面上分子间电荷转移态之间相互作用来改变自旋交换能量的光学方法。

著录项

  • 来源
    《Applied Physics Letters》 |2014年第2期|1-4|共4页
  • 作者单位

    Department of Materials Science and Engineering, University of Tennessee Knoxville, Tennessee 37996, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 13:10:13

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