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首页> 外文期刊>Electrochimica Acta >Fabrication of organometallic halide perovskite electrochemical supercapacitors utilizing quasi-solid-state electrolytes for energy storage devices
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Fabrication of organometallic halide perovskite electrochemical supercapacitors utilizing quasi-solid-state electrolytes for energy storage devices

机译:适用于储能装置的准固态电解质的有机金属卤化物钙钛矿电化学超级电容器的制备

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摘要

Organometallic halide perovskite materials have gained enormous interest in energy conversion and various optoelectronics applications. These unique materials possess great ionic response. Hence, their suitability for energy storage device applications needs to be explored. We fabricated for the first time all-solid-state perovskite electrochemical supercapacitors with high areal capacitance, fast charge-discharge rate, high power density and superior cyclability. We investigated electrochemical energy storage performance of two different quasi-solid-state electrolytes sandwiched between two symmetric perovskite electrodes. We recorded highest areal capacitance of 21.50 mu F/cm(2) which is 3.65 times greater than areal capacitance recorded by similar perovskite electrochemical capacitors utilizing liquid-state electrolytes. High power density of 5.05 W/cm(2) was achieved. Electrochemical impedance spectroscopy (EIS) was used to study the ionic transport mechanism and properties of our fabricated devices. The Nyquist plots exhibit linear characteristic across low and high frequency ranges, indicating excellent electrolytes diffusion into the perovskite electrodes and confirming ideal supercapacitor behavior of these devices. All devices exhibit short relaxation time with device having least relaxation time of 251.19 mu s indicative of fast discharge properties of fabricated devices. Our devices show excellent cyclability with device retaining 98.34% of its initial capacitance after 1000 cycles. (C) 2019 Elsevier Ltd. All rights reserved.
机译:有机金属卤化物钙钛矿材料对能量转换和各种光电子应用的巨大兴趣。这些独特的材料具有很大的离子反应。因此,需要探索它们对能量存储设备应用的适用性。我们为第一次采用全固态钙钛矿电化学超级电容器,具有高面积电容,快速充放电率,高功率密度和卓越的可阻碍性。我们研究了两种不同的钙耐电极电极夹在两个对称蠕动电极之间的两种不同的准固态电解质的电化学能量存储性能。我们记录了21.50μmf/ cm(2)的最高面积电容,其比使用液态电解质的类似钙钛矿电化学电容器记录的面积电容大3.65倍。实现了5.05W / cm(2)的高功率密度。电化学阻抗光谱(EIS)用于研究我们制造的装置的离子传输机理和性能。奈奎斯特曲线表现出跨越低频范围的线性特性,表明优异的电解质扩散到钙钛矿电极中并确认这些装置的理想超级电容器行为。所有器件均采用至少放松时间251.19μs表示制造设备的快速放电性能的装置的短弛豫时间。我们的器件显示出优异的可靠性,在1000次循环后,装置保持其初始电容的98.34%。 (c)2019 Elsevier Ltd.保留所有权利。

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