transfer of CHNHPbI single crystals in mesoporous scaffolds for efficient perovskite solar cells.

transfer of CHNHPbI single crystals in mesoporous scaffolds for efficient perovskite solar cells.

Guan, Yanjun;Xu, Mi;Zhang, Wenhao;Li, Da;Hou, Xiaomeng;Hong, Li;Wang, Qifei;Zhang, Zhihui;Mei, Anyi;Chen, Min;Zhou, Yuanyuan;Padture, Nitin P;Hu, Yue;Rong, Yaoguang;Han, Hongwei;
Chemical science 2020 Vol. 11 pp. 474-481
251
guan2020chemical

Abstract

Printable mesoscopic perovskite solar cells are usually fabricated by drop-casting perovskite precursor solution on a screen-printed mesoporous TiO/ZrO/carbon triple-layer followed by thermal annealing. They have attracted much attention due to their simple fabrication process and remarkable stability. However, challenges lie in how to achieve complete pore fillings of perovskites in the meso-pores and to obtain high-quality perovskite crystals. Here, we report an crystal transfer (ICT) process based on gas-solid interaction to deposit perovskite CHNHPbI absorber in the scaffold. CHNHPbI single crystals are first transformed into a liquid phase exposure to methylamine gas flow. After complete infiltration into the nano-structured scaffolds, the liquid phase is converted back to the solid phase with reduction of methylamine gas partial pressure, maintaining the high-quality of CHNHPbI single crystals. Compared with the conventional drop-casting method, the ICT method effectively leads to interconnected morphology and prolongs the charge-carrier lifetime (from ∼37.52 ns to ∼110.85 ns) of the perovskite absorber in the scaffold. As a result, the devices can deliver a power conversion efficiency of 15.89%, which is attributed to the suppressed charge recombination and correspondingly enhanced open-circuit voltage of 0.98 V.

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ID: 101437
Ref Key: guan2020chemical
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101437
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10.1039/c9sc04900b
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