TY - JOUR
T1 - Halide-chalcogenide hetero-structure for efficient and stable perovskite solar cells
AU - Nie, Riming
AU - Wei, Zeliang
AU - Mehta, Aarti
AU - Chao, Lingfeng
AU - Gao, Jiaxing
AU - Chu, Weicun
AU - Li, Zhongping
AU - Miao, Han
AU - Chen, Yonghua
AU - Guo, Wanlin
N1 - Publisher Copyright:
© 2023 Elsevier B.V.
PY - 2023/4/15
Y1 - 2023/4/15
N2 - Organic-inorganic halide perovskite solar cells (PSCs) have experienced rapid growth in power conversion efficiencies (PCEs), however, their commercialization is limited by their inherent poor long-term stability. Mixed halide and chalcogenide is a good pathway to fabricate highly efficient and stable solar cells. Here, we constructed halide-chalcogenide hetero-structure in PSCs by incorporating Bi2S3 quantum dots (QDs) into 2,2′,7,7′-tetrakis-(N,N-di-4-methoxyphenylamino)-9,9′-spirobifluorene (spiro-OMeTAD). The construction of halide-chalcogenide hetero-structure optimizes the energy level matching between spiro-OMeTAD and perovskite, inhibits the decomposition of α-phase FAPbI3 and the formation of δ-phase FAPbI3, increases the hole mobility of spiro-OMeTAD, reduces the defect density, and passivates the defect states. The solar cells with halide-chalcogenide hetero-structure prepared by 0.5 mg/mL Bi2S3 QDs exhibited the highest PCE of 23.31% at standard air mass 1.5 global with enhanced humidity stability. This work provides a perspective on the introduction of halide-chalcogenide hetero-structure to enhance the stability of PSCs.
AB - Organic-inorganic halide perovskite solar cells (PSCs) have experienced rapid growth in power conversion efficiencies (PCEs), however, their commercialization is limited by their inherent poor long-term stability. Mixed halide and chalcogenide is a good pathway to fabricate highly efficient and stable solar cells. Here, we constructed halide-chalcogenide hetero-structure in PSCs by incorporating Bi2S3 quantum dots (QDs) into 2,2′,7,7′-tetrakis-(N,N-di-4-methoxyphenylamino)-9,9′-spirobifluorene (spiro-OMeTAD). The construction of halide-chalcogenide hetero-structure optimizes the energy level matching between spiro-OMeTAD and perovskite, inhibits the decomposition of α-phase FAPbI3 and the formation of δ-phase FAPbI3, increases the hole mobility of spiro-OMeTAD, reduces the defect density, and passivates the defect states. The solar cells with halide-chalcogenide hetero-structure prepared by 0.5 mg/mL Bi2S3 QDs exhibited the highest PCE of 23.31% at standard air mass 1.5 global with enhanced humidity stability. This work provides a perspective on the introduction of halide-chalcogenide hetero-structure to enhance the stability of PSCs.
KW - BiS quantum dots
KW - Charge transfer
KW - Crystal orientation
KW - Halide-chalcogenide hetero-structure
KW - Perovskite solar cells
UR - http://www.scopus.com/inward/record.url?scp=85149373089&partnerID=8YFLogxK
U2 - 10.1016/j.cej.2023.142214
DO - 10.1016/j.cej.2023.142214
M3 - 文章
AN - SCOPUS:85149373089
SN - 1385-8947
VL - 462
JO - Chemical Engineering Journal
JF - Chemical Engineering Journal
M1 - 142214
ER -