TY - JOUR
T1 - Efficient Perovskite Solar Cells Made by Using a Vapor-Assisted Hot Crystallization Method in Air
AU - Lv, Lingjie
AU - Zuo, Chuantian
AU - Zhang, Lixiu
AU - Xiao, Zuo
AU - Bao, Qinye
AU - Yi, Chenyi
AU - Chang, Jingjing
AU - Yan, Keyou
AU - Ding, Yong
AU - Wu, Congcong
AU - Jin, Ke
AU - Dong, Hua
AU - Wei, Di
AU - Ding, Liming
N1 - Publisher Copyright:
© 2025 Wiley-VCH GmbH.
PY - 2025/9/25
Y1 - 2025/9/25
N2 - Perovskite solar cells (PSCs) achieve remarkable progress in recent years. However, their commercialization remains hindered by conventional fabrication processes that require antisolvent and prolonged annealing, which compromises scalability and cost-effectiveness. In this study, a vapor-assisted hot crystallization method is proposed, in which a vapor atmosphere is applied during the crystallization process to improve quality of perovskite films. The crystallization and annealing process takes less than 3 min, which is much faster than the antisolvent spin-coating method. In addition, the method can be performed in ambient air without using antisolvent. Systematic characterization demonstrates that solvent vapor atmospheres enhance crystallinity, suppress defect formation, and promote denser growth at grain boundaries. Through synergistic modulation of vapor compositions, large-domain, uniform, and pinhole-free perovskite films are obtained. A power conversion efficiency (PCE) of 23.72% is achieved, which is the highest PCE for perovskite solar cells made by using hot-crystallization method.
AB - Perovskite solar cells (PSCs) achieve remarkable progress in recent years. However, their commercialization remains hindered by conventional fabrication processes that require antisolvent and prolonged annealing, which compromises scalability and cost-effectiveness. In this study, a vapor-assisted hot crystallization method is proposed, in which a vapor atmosphere is applied during the crystallization process to improve quality of perovskite films. The crystallization and annealing process takes less than 3 min, which is much faster than the antisolvent spin-coating method. In addition, the method can be performed in ambient air without using antisolvent. Systematic characterization demonstrates that solvent vapor atmospheres enhance crystallinity, suppress defect formation, and promote denser growth at grain boundaries. Through synergistic modulation of vapor compositions, large-domain, uniform, and pinhole-free perovskite films are obtained. A power conversion efficiency (PCE) of 23.72% is achieved, which is the highest PCE for perovskite solar cells made by using hot-crystallization method.
KW - fast crystallization
KW - large domain
KW - perovskite solar cells
KW - stability
KW - vapor-assisted hot crystallization
UR - https://www.scopus.com/pages/publications/105012386920
U2 - 10.1002/smll.202506937
DO - 10.1002/smll.202506937
M3 - 文章
AN - SCOPUS:105012386920
SN - 1613-6810
VL - 21
JO - Small
JF - Small
IS - 38
M1 - e06937
ER -