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Thiocyanate-mediated additive engineering enables oriented crystallization and suppressed halide migration for efficient and stable perovskite/silicon tandem solar cells

delete2026-08-10
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PRE
AI
J
Jie Xu
K
Kaitao Liang
Y
Yinheng Ren
B
Bin Zhang
M
Mengyu Xu
J
Jianwen Xu
Z
Zhoucheng Xu
S
Shanyue Hou
H
Huiming Luo
Z
Zheyu Li
D
Dongsheng Ren
L
Languang Lu
W
Wenyu Hu
Z
Zunyan Hu
F
Fuyuan Yang
M
Mojtaba Abdi‐Jalebi
T
Thomas M. Brown
X
Xiang Liu *
M
Minggao Ouyang *
DOI:10.1016/j.nanoen.2026.112283delete
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Abstract

Abstract

En 中文
• Thiocyanate-mediated stabilization strategy advances stable wide-bandgap perovskites. • SCN⁻ lowers surface energy, driving rapid nucleation and (100) plane orientation. • SCN⁻ fills I vacancies, raising migration barrier and suppressing phase segregation. • The optimized perovskite/silicon tandem solar cell achieved an efficiency of 32.4%. • The operational lifetime of tandem cells is extended by four times to T80∼1100 h.
Keywords:
Wide bandgap perovskites
Tandem solar cells
Pseudo halogens thiocyanate
Surface energy
Stability

Journal

Nano Energy cover
Nano Energy
IF:
17.1
Papers:
1.1W
Citations:
13.0W

Organization

T
tsinghua university
Scholars:
11.5W
Papers: 9.9W
Citations: 137
B
Beihang University
Scholars:
5.0W
Papers: 4.0W
Citations: 37
O
ordos new energy research institute
Scholars:
5
Papers: 3
Citations: 0
U
university college london
Scholars:
7.3K
Papers: 4.0K
Citations: 1
T
Tor Vergata University of Rome
Scholars:
186
Papers: 82
Citations: 0
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