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Mixed lead source precursors for producing light absorption layers of perovskite solar cells.


ABSTRACT: Beside the conventional perovskite precursors with lead halides as lead sources, non-halide lead sources provide additional tools for tuning the properties of perovskite layers, and lead acetate is a promising candidate for non-halide lead sources. In this work, we develop the perovskite precursor with a mixed non-halide lead source by partially replacing lead acetate with lead thiocyanate. Scanning electron microscopy and X-ray diffraction measurements indicate that lead thiocyanate additive can remarkably increase the size of perovskite grains and the crystallization of perovskite layers. And the cross-sectional investigation illustrates that the penetration of perovskite materials into TiO2 porous layers also can be improved by the lead thiocyanate additive. As a consequence, the recombination process and charge extraction process of devices are improved. By optimizing the quantity of lead thiocyanate, the power conversion efficiency of devices is increased from 14.0% to 17.2%, and the stability of devices is elevated simultaneously.

SUBMITTER: Xie H 

PROVIDER: S-EPMC8693714 | biostudies-literature | 2021 Jan

REPOSITORIES: biostudies-literature

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Mixed lead source precursors for producing light absorption layers of perovskite solar cells.

Xie Honggang H   Zheng Bo B   Gao Can C   Xu Jiannan J   Zhang Jiejing J   Gao Chunxiao C   Liu Xizhe X  

RSC advances 20210107 4


Beside the conventional perovskite precursors with lead halides as lead sources, non-halide lead sources provide additional tools for tuning the properties of perovskite layers, and lead acetate is a promising candidate for non-halide lead sources. In this work, we develop the perovskite precursor with a mixed non-halide lead source by partially replacing lead acetate with lead thiocyanate. Scanning electron microscopy and X-ray diffraction measurements indicate that lead thiocyanate additive ca  ...[more]

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