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首页> 外文期刊>Advanced energy materials >Carrier-Selectivity-Dependent Charge Recombination Dynamics in Organic Photovoltaic Cells with a Ferroelectric Blend Interlayer
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Carrier-Selectivity-Dependent Charge Recombination Dynamics in Organic Photovoltaic Cells with a Ferroelectric Blend Interlayer

机译:具有铁电共混夹层的有机光伏电池中载流子选择性依赖性电荷复合动力学

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摘要

Interfacial energetics determines the performance of organic photovoltaic (OPV) cells based on a thin film of organic semiconductor blends. Here, an approach to modulating the “carrier selectivity” at the charge collecting interfaces and the consequent variations in the nongeminate charge carrier recombination dynamics in OPV devices are demonstrated. A ferroelectric blend interfacial layer composed of a solution-processable ferroelectric poly­mer and a wide bandgap semiconductor is introduced as a tunable electron selective layer in inverted OPV devices with non-Ohmic contact electrodes. The direct rendering of dipole alignment within the ferroelectric blend layer is found to increase the carrier selectivity of the charge collecting interfaces up to two orders of magnitude. Transient photovoltaic analyses reveal that the increase of carrier selectivity significantly reduces the diffusion and recombination among minority carriers in the vicinity of the electrodes, giving rise to the 85% increased charge carrier lifetime. Furthermore, the carrier-selective charge extraction leads to the constitution of the internal potential within the devices, even with energetically identical cathodes and anodes. With these carrier-selectivity-controlled interlayers, the devices based on various photoactive materials commonly display significant increments in the device performances, especially with the high fill factor of up to 0.76 under optimized conditions.
机译:界面能学决定了基于有机半导体混合物薄膜的有机光伏(OPV)电池的性能。在此,说明了一种在电荷收集界面上调节“载流子选择性”的方法,以及随之而来的OPV器件中非对空电荷载流子复合动力学的变化。在具有非欧姆接触电极的倒置OPV器件中,将由可溶液处理的铁电聚合物和宽带隙半导体组成的铁电混合界面层引入为可调谐电子选择层。已发现在铁电共混物层内直接产生偶极排列可将电荷收集界面的载流子选择性提高至两个数量级。瞬态光伏分析表明,载流子选择性的提高显着降低了电极附近少数载流子之间的扩散和复合,从而使电荷载流子寿命增加了85%。此外,即使在能量上相同的阴极和阳极下,载流子选择性电荷提取也导致了器件内内部电位的构成。借助这些受载流子选择性控制的中间层,基于各种光敏材料的器件通常会显着提高器件性能,尤其是在优化条件下的填充系数高达0.76的情况下。

著录项

  • 来源
    《Advanced energy materials》 |2015年第19期|1-13|共13页
  • 作者单位

    Department of Chemical Engineering Pohang University of Science and Technology Pohang South Korea;

    Department of Chemical Engineering Pohang University of Science and Technology Pohang South Korea;

    Department of Chemical Engineering Pohang University of Science and Technology Pohang South Korea;

    Department of Chemical Engineering Pohang University of Science and Technology Pohang South Korea;

    Department of Chemical Engineering Pohang University of Science and Technology Pohang South Korea;

    Department of Chemical Engineering Pohang University of Science and Technology Pohang South Korea;

    Department of Chemical Engineering Pohang University of Science and Technology Pohang South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    carrier-selectivity; ferroelectric; organic solar cells; recombination dynamics;

    机译:载流子选择性铁电有机太阳能电池重组动力学;

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