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Influence of the Nature of A Cation on Dynamics of Charge Transfer Processes in Perovskite Solar Cells

机译:阳离子性质对钙钛矿太阳能电池电荷转移过程动力学的影响

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摘要

The electronic processes occurring within the perovskite solar cells (PSCs) are strongly influenced by the nature of the organic A cations present within the inorganic framework. In this study, the impact of FA (CH(NH2)(2)(+)) and Cs+ cations on the intrinsic and interfacial properties in the FAPbBr(3) and CsPbBr3 PSCs is investigated. The analysis of current density (J(SC)) and photovoltage (V-OC) as a function of illumination intensity establishes that the interfacial charge transport is more rapid in FAPbBr(3) devices. Small perturbation measurements including intensity modulated photocurrent and photovoltage spectroscopy are applied to explore the resistive and capacitive elements. Furthermore, electrochemical impedance spectroscopy measurements are found to correlate well with the photovoltaic characteristics of FAPbBr(3) and CsPbBr3 PSCs. Overall, the in-depth analysis of various phenomena occurring within the bromide PSCs allows to underline the working principle, which provides a key to optimize the device performance. The present protocol is not only valid for PSCs but can also be extended to devices based on alternative light harvesters.
机译:钙钛矿太阳能电池(PSC)中发生的电子过程受到无机骨架中存在的有机A阳离子的性质的强烈影响。在这项研究中,FA(CH(NH2)(2)(+))和Cs +阳离子对FAPbBr(3)和CsPbBr3 PSC的固有和界面性质的影响进行了研究。根据照明强度对电流密度(J(SC))和光电压(V-OC)进行分析,可以确定FAPbBr(3)器件中的界面电荷传输更为迅速。包括强度调制光电流和光电压光谱在内的小扰动测量被用于探索电阻和电容元件。此外,发现电化学阻抗谱测量与FAPbBr(3)和CsPbBr3 PSC的光伏特性良好相关。总体而言,对溴化物PSC中发生的各种现象的深入分析可以突显其工作原理,这是优化器件性能的关键。本协议不仅对PSC有效,而且可以扩展到基于替代光收集器的设备。

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