Surface Modification of Mesoporous TiO2 with Potassium ion Enhances Photo-Voltage in Perovskite Solar Cell

Jianjun Zhu, X. Zhu, Yanru Zhang, Xiaolei Qi, Zhenjiang Wang, Junjie Zhou, Minghao Li, Chao Jiang, C. Yi
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Abstract

Trap induced non-radiative recombination is thought to be responsible for hysteresis and voltage loss in perovskite solar cells. Compared with interface or surface, bulk perovskite crystal has higher tolerance with trap state. Hence, interface engineering to enhance perovskite based device performance is particularly important to reach theory limitation. Here, we found that the modification of mesoporous TiO2 with KI is an effective way to reduce trap density at the interface between electron transporting layer and perovskite layer. The introduction of KI has no effect on perovskite morphology or charge carrier extraction, but the photo-voltage of devices is increased after KI treatment.
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钾离子修饰介孔TiO2提高钙钛矿太阳能电池光电压
阱诱导的非辐射复合被认为是钙钛矿太阳能电池中迟滞和电压损失的原因。与界面或表面相比,块状钙钛矿晶体对陷阱态的容忍度更高。因此,提高钙钛矿基器件性能的界面工程对于达到理论极限尤为重要。本研究发现,用KI修饰介孔TiO2是降低电子传递层与钙钛矿层界面处陷阱密度的有效途径。KI的引入对钙钛矿的形貌和载流子的提取没有影响,但KI处理后器件的光电压升高。
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