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Multifunctional succinate additive for flexible perovskite solar cells with more than 23% power-conversion efficiency.


ABSTRACT: Flexible perovskite solar cells (FPSCs) have emerged as power sources in versatile applications owing to their high-efficiency characteristics, excellent flexibility, and relatively low cost. Nevertheless, undesired strain in perovskite films greatly impacts the power-conversion efficiency (PCE) and stability of PSCs, particularly in FPSCs. Herein, a novel multifunctional organic salt, methylammonium succinate, which can alleviate strain and reinforce grain boundaries, was incorporated into the perovskite film, leading to relaxed microstrain and a lower defect concentration. As a result, a PCE of 25.4% for rigid PSCs and a record PCE of 23.6% (certified 22.5%) for FPSCs have been achieved. In addition, the corresponding FPSCs exhibited excellent bending durability, maintaining ∼85% of their initial efficiency after bending at a 6 mm radius for 10 000 cycles.

SUBMITTER: Li M 

PROVIDER: S-EPMC9490203 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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Multifunctional succinate additive for flexible perovskite solar cells with more than 23% power-conversion efficiency.

Li Minghao M   Zhou Junjie J   Tan Liguo L   Li Hang H   Liu Yue Y   Jiang Chaofan C   Ye Yiran Y   Ding Liming L   Tress Wolfgang W   Yi Chenyi C  

Innovation (Cambridge (Mass.)) 20220906 6


Flexible perovskite solar cells (FPSCs) have emerged as power sources in versatile applications owing to their high-efficiency characteristics, excellent flexibility, and relatively low cost. Nevertheless, undesired strain in perovskite films greatly impacts the power-conversion efficiency (PCE) and stability of PSCs, particularly in FPSCs. Herein, a novel multifunctional organic salt, methylammonium succinate, which can alleviate strain and reinforce grain boundaries, was incorporated into the  ...[more]

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