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Ion mobility independent large signal switching of perovskite devices

机译:离子移动性独立的大信号切换佩洛夫斯库特设备

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摘要

The presence of mobile ions in perovskites is well known to influence the device electrostatics leading to a wide variety of anomalous characteristics related to hysteresis, efficiency degradation, low frequency capacitance, large signal switching, etc. Accordingly, the ion mobility is understood to a have a critical influence on the associated time constants/delays. Quite contrary to this broadly accepted thought, here we suggest that the time delays associated with large signal switching could show a universal behavior dictated by electronic dipoles, rather than ionic dipoles. Due to the resultant sudden and dramatic collapse of a contact layer depletion region, large signal switching delays are independent of ion mobilities. Furthermore, our detailed numerical simulations, supported by experimental results, indicate that terminal currents show a near steady state behavior well ahead of the relaxation of ionic distributions. These results have interesting implications toward the understanding and optimization of perovskite based electronic devices, including solar cells, LEDs, resistive memories, and ferroelectric memories.
机译:众所周知,普遍存在的移动离子的存在是利用导致与滞后,效率降低,低频电容,大信号切换等有关的各种异常特性的装置静电。因此,将离子移动性理解为具有对相关时间常数/延迟的关键影响。与这种广泛的思想相当违背,这里我们建议与大信号切换相关的时间延迟可以显示由电子偶极子而不是离子偶极级指定的普遍行为。由于接触层耗尽区的所得到的突然和显着的塌陷,大的信号切换延迟与离子迁移率无关。此外,我们通过实验结果支持的详细数值模拟表明终端电流在离子分布的松弛之前,终端电流展示了近稳态行为。这些结果对基于佩洛夫斯的电子设备的理解和优化的理解和优化具有有趣的影响,包括太阳能电池,LED,电阻存储器和铁电存储器。

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  • 来源
    《Applied Physics Letters》 |2021年第2期|023506.1-023506.5|共5页
  • 作者单位

    Department of Electrical Engineering Indian Institute of Technology Bombay Mumbai-400076 India;

    Department of Electrical Engineering Indian Institute of Technology Bombay Mumbai-400076 India;

    Department of Physics Indian Institute of Technology Bombay Mumbai-400076 India;

    Department of Electrical Engineering Indian Institute of Technology Bombay Mumbai-400076 India;

    Department of Electrical Engineering Indian Institute of Technology Bombay Mumbai-400076 India;

    Department of Physics Indian Institute of Technology Bombay Mumbai-400076 India;

    Department of Physics Indian Institute of Technology Bombay Mumbai-400076 India;

    Department of Electrical Engineering Indian Institute of Technology Bombay Mumbai-400076 India;

  • 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);
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  • 正文语种 eng
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