TY - JOUR
T1 - Ambient-Air-Stable Lead-Free CsSnI3Solar Cells with Greater than 7.5% Efficiency
AU - Ye, Tao
AU - Wang, Ke
AU - Hou, Yuchen
AU - Yang, Dong
AU - Smith, Nicholas
AU - Magill, Brenden
AU - Yoon, Jungjin
AU - Mudiyanselage, Rathsara R.H.H.
AU - Khodaparast, Giti A.
AU - Wang, Kai
AU - Priya, Shashank
N1 - Publisher Copyright:
©
PY - 2021/3/24
Y1 - 2021/3/24
N2 - Black orthorhombic (B-γ) CsSnI3 with reduced biotoxicity and environmental impact and excellent optoelectronic properties is being considered as a promising eco-friendly candidate for high-performing perovskite solar cells (PSCs). A major challenge in a large-scale implementation of CsSnI3 PSCs includes the rapid transformation of Sn2+ to Sn4+ (within a few minutes) under an ambient-Air condition. Here, we demonstrate that ambient-Air stable B-γCsSnI3 PSCs can be fabricated by incorporating N,N′-methylenebis(acrylamide) (MBAA) into the perovskite layer and by using poly(3-hexylthiophene) as the hole transporting material. The lone electron pairs of-NH and-CO units of MBAA are designed to form coordination bonding with Sn2+ in the B-γCsSnI3, resulting in a reduced defect (Sn4+) density and better stability under multiple conditions for the perovskite light absorber. After a modification, the highest power conversion efficiency (PCE) of 7.50% is documented under an ambient-Air condition for the unencapsulated CsSnI3-MBAA PSC. Furthermore, the MBAA-modified devices sustain 60.2%, 76.5%, and 58.4% of their initial PCEs after 1440 h of storage in an inert condition, after 120 h of storage in an ambient-Air condition, and after 120 h of 1 Sun continuous illumination, respectively.
AB - Black orthorhombic (B-γ) CsSnI3 with reduced biotoxicity and environmental impact and excellent optoelectronic properties is being considered as a promising eco-friendly candidate for high-performing perovskite solar cells (PSCs). A major challenge in a large-scale implementation of CsSnI3 PSCs includes the rapid transformation of Sn2+ to Sn4+ (within a few minutes) under an ambient-Air condition. Here, we demonstrate that ambient-Air stable B-γCsSnI3 PSCs can be fabricated by incorporating N,N′-methylenebis(acrylamide) (MBAA) into the perovskite layer and by using poly(3-hexylthiophene) as the hole transporting material. The lone electron pairs of-NH and-CO units of MBAA are designed to form coordination bonding with Sn2+ in the B-γCsSnI3, resulting in a reduced defect (Sn4+) density and better stability under multiple conditions for the perovskite light absorber. After a modification, the highest power conversion efficiency (PCE) of 7.50% is documented under an ambient-Air condition for the unencapsulated CsSnI3-MBAA PSC. Furthermore, the MBAA-modified devices sustain 60.2%, 76.5%, and 58.4% of their initial PCEs after 1440 h of storage in an inert condition, after 120 h of storage in an ambient-Air condition, and after 120 h of 1 Sun continuous illumination, respectively.
UR - http://www.scopus.com/inward/record.url?scp=85103440925&partnerID=8YFLogxK
U2 - 10.1021/jacs.0c13069
DO - 10.1021/jacs.0c13069
M3 - 文章
C2 - 33705120
AN - SCOPUS:85103440925
SN - 0002-7863
VL - 143
SP - 4319
EP - 4328
JO - Journal of the American Chemical Society
JF - Journal of the American Chemical Society
IS - 11
ER -