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首页> 外文期刊>Journal of physical chemistry letters >Capacitive Dark Currents, Hysteresis, and Electrode Polarization in Lead Halide Perovskite Solar Cells
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Capacitive Dark Currents, Hysteresis, and Electrode Polarization in Lead Halide Perovskite Solar Cells

机译:卤化钙钛矿型太阳能电池中的电容性暗电流,磁滞和电极极化

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Despite spectacular advances in conversion efficiency of perovskite solar cell many aspects of its operating modes are still poorly understood. Capacitance constitutes a key parameter to explore which mechanisms control particular functioning and undesired effects as current hysteresis. Analyzing capacitive responses allows addressing not only the nature of charge distribution in the device but also the kinetics of the charging processes and how they alter the solar cell current. Two main polarization processes are identified. Dielectric properties of the microscopic dipolar units through the orthorhombic-to-tetragonal phase transition account for the measured intermediate frequency capacitance. Electrode polarization caused by interfacial effects, presumably related to kinetically slow ions piled up in the vicinity of the outer interfaces, consistently explain the reported excess capacitance values at low frequencies. In addition, current voltage curves and capacitive responses of perovskite-based solar cells are connected. The observed hysteretic effect in the dark current originates from the slow capacitive mechanisms.
机译:尽管钙钛矿太阳能电池的转换效率取得了惊人的进步,但其运行模式的许多方面仍知之甚少。电容构成关键参数,以探索哪种机制控制特定的功能和不希望的影响,例如电流滞后。分析电容性响应不仅可以解决设备中电荷分布的性质,还可以解决充电过程的动力学问题以及它们如何改变太阳能电池电流。确定了两个主要的极化过程。微小的偶极子单元通过正交到四边形相变的介电特性说明了测得的中频电容。由界面效应引起的电极极化,大概与在外界面附近堆积的动力学慢的离子有关,始终如一地解释了低频下所报告的过大电容值。另外,连接了钙钛矿基太阳能电池的电流电压曲线和电容响应。在暗电流中观察到的磁滞效应源自缓慢的电容机制。

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