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Effect of addition of indium oxide layer on all-inorganic perovskite solar cells

SOLID-STATE ELECTRONICS [2023]
Xiao Wang, Chaofan Zheng, Bei Liu, Jinghua Zhou, Qing Zhang, Zelin Jia, Tao Xue, Kunping Guo, Jin Huang, Fanghui Zhang
ABSTRACT

In perovskite solar cells, the interface plays a crucial role in photovoltaic performance because excitons dissociate and compound at the interface. In this paper, the optical absorption layer of In 2 O 3 planar perovskite solar cells is studied, which is an efficient intermediate layer between the TiO 2 electron transport layer and perovskite. The modification of the In 2 O 3 interlayer increases the average power conversion efficiency from 6.74% to 10.68%. Based on this background, some other feature descriptions are also carried out. The results show that the photovoltaic performance can be improved by depositing the In 2 O 3 interlayer, mainly due to the improved film morphology, reduced recombination center, bulk carrier concentration and Hall mobility. It has been shown that In 2 O 3 can be used as an efficient interface material on all-inorganic perovskite solar cells.

MATERIALS

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