Issue 5, 2023

Reduced 0.418 V VOC-deficit of 1.73 eV wide-bandgap perovskite solar cells assisted by dual chlorides for efficient all-perovskite tandems

Abstract

Wide-bandgap (wide-Eg) perovskites with bandgaps over 1.65 eV have great potential for constructing tandem solar cells (TSCs); however, they still suffer from large open-circuit voltage (VOC) deficits. Phase segregation and non-radiative recombination are great challenges for inverted wide-Eg perovskite solar cells (PSCs) to achieve an ideal VOC and long-term operation stability. Herein, we report a synergistic strategy of using lead chloride (PbCl2) and phenethylammonium chloride (PMACl) to introduce chlorine (Cl) into a bulk film and form a two-dimensional (2D) phase at the film surface for 1.73 eV wide-Eg PSCs, which reduce the VOC-deficit from 0.558 V to 0.418 V. Cl in PbCl2 enters the crystal lattice of the perovskite film, reducing the halide vacancies and suppressing ion migration. Meanwhile, PMACl facilitates the formation of a 2D perovskite phase at the grain surfaces, alleviating recombination and improving the stability. As a result, the best-performing wide-Eg PSC with a high VOC of 1.312 V and an efficiency of over 20% is achieved, enabling the fabrication of two-terminal all-perovskite TSCs with a champion efficiency of 26.68%. This work provides in-depth insights into how Cl suppresses phase segregation and non-radiative recombination in wide-Eg PSCs, offering a promising strategy for efficient and stable all-perovskite TSCs.

Graphical abstract: Reduced 0.418 V VOC-deficit of 1.73 eV wide-bandgap perovskite solar cells assisted by dual chlorides for efficient all-perovskite tandems

Supplementary files

Article information

Article type
Paper
Submitted
19 Dec 2022
Accepted
14 Mar 2023
First published
15 Mar 2023

Energy Environ. Sci., 2023,16, 2080-2089

Reduced 0.418 V VOC-deficit of 1.73 eV wide-bandgap perovskite solar cells assisted by dual chlorides for efficient all-perovskite tandems

Y. Zhao, C. Wang, T. Ma, L. Zhou, Z. Wu, H. Wang, C. Chen, Z. Yu, W. Sun, A. Wang, H. Huang, B. Zou, D. Zhao and X. Li, Energy Environ. Sci., 2023, 16, 2080 DOI: 10.1039/D2EE04087E

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