首页> 外文期刊>Solar RRL >Unraveling the Key Relationship Between Perovskite Capacitive Memory, Long Timescale Cooperative Relaxation Phenomena, and Anomalous J–V Hysteresis
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Unraveling the Key Relationship Between Perovskite Capacitive Memory, Long Timescale Cooperative Relaxation Phenomena, and Anomalous J–V Hysteresis

机译:解开Perovskite电容内存,长时间合作弛豫现象和异常J-V滞后之间的关键关系

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摘要

Capacitive response at long time scales seems to remain an elusive feature in the analysis of the electrical properties of perovskite-based solar cells. It belongs to one of the critical anomalous effects that arises from the characteristic phenomenology of this type of emerging photovoltaic devices. Thereby, accurately deducing key capacitance feature of new light harvesting perovskites from electrical measurements represents a significant challenge regarding the interpretation of physical processes and the control of undesired mechanisms, such as slow dynamic effects and/or current density–voltage (J–V) hysteresis. Herein, it is shown that long timescale mechanisms that give rise to hysteresis in stable and high-efficiency quadruple-cation perovskites are not due to a classical capacitive behavior in the sense of ideal charge accumulation processes. Instead, it is a phenomenological consequence of slow memory-based capacitive currents and the underlying cooperative relaxations. A fractional dynamics approach, based on the idea of capacitance distribution in perovskite devices, reliably models the slow transient phenomena and the consequent scan-rate- and bias-dependent hysteresis. Observable for a wide variety of photovoltaic halide perovskites, distributed capacitive effects are rather universal anomalous phenomena, which can be related to the long-time electrical response and hysteresis.
机译:长时间尺度的电容响应似乎是分析基于Perovskite的太阳能电池的电学性质的难以捉摸的特征。它属于来自这种类型的新出现光伏器件的特征现象学源的临界异常效应之一。因此,从电测量中精确地推出新光的关键电容特征来自电测量的钙锌矿代表了关于物理过程的解释和对不期望的机制的解释的重大挑战,例如动态效果和/或电流密度 - 电压(J-V)滞后。在此,示出了在稳定和高效的四重阳离子钙钛矿中产生滞后的长时间测量机制不是由于理想电荷累积过程感的经典电容性行为。相反,它是基于慢速存储器的电容电流和基础合作放松的现象学结果。基于Perovskite设备中电容分布的概念,可靠地模拟慢速瞬态现象和随后的扫描率和偏置依赖性滞后的分数动力学方法。可观察到各种光伏卤化物钙钛矿,分布式电容效果是相当普遍的异常现象,这可能与长期电响应和滞后相关。

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  • 来源
    《Solar RRL》 |2021年第4期|2000707.1-2000707.8|共8页
  • 作者单位

    Escuela Superior de Ciencias Experimentales y TecnologiaUniversidad Rey Juan CarlosC/ Tulipan s/n 28933 Mostoles Madrid Spain;

    Escuela Superior de Ciencias Experimentales y TecnologiaUniversidad Rey Juan CarlosC/ Tulipan s/n 28933 Mostoles Madrid Spain;

    Escuela Superior de Ciencias Experimentales y TecnologiaUniversidad Rey Juan CarlosC/ Tulipan s/n 28933 Mostoles Madrid Spain;

    Escuela Superior de Ciencias Experimentales y TecnologiaUniversidad Rey Juan CarlosC/ Tulipan s/n 28933 Mostoles Madrid Spain;

    Catalan Institute of Nanoscience and Nanotechnology (ICN2)CSIC and the Barcelona Institute of Science and TechnologyCampus UAB 08193 Bellaterra Barcelona Spain;

    Catalan Institute of Nanoscience and Nanotechnology (ICN2)CSIC and the Barcelona Institute of Science and TechnologyCampus UAB 08193 Bellaterra Barcelona Spain;

    Catalan Institute of Nanoscience and Nanotechnology (ICN2)CSIC and the Barcelona Institute of Science and TechnologyCampus UAB 08193 Bellaterra Barcelona Spain;

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

    fractional calculus; hysteresis; impedance and transient analysis; nonideal capacitance; perovskite solar cells;

    机译:分数微积分;滞后;阻抗和瞬态分析;非膜电容;Perovskite太阳能电池;
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