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Oxidation-Retarded AgNWs/IZO Composite Electrodes for Highly Efficient and Stable Semitransparent Perovskite Solar Cells

delete2026-06-12
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PRE
AI
Z
Ze-Qian Guo
Y
Yan-Ping Mo
H
Hao Chen
C
Chao Wang
H
Hao-Yu Cai
K
Kai-Xin Liu
L
Ling-Min Liu
G
Guo-Dong Liu
J
Jian-Qiu Yang
H
Hong-Ming Xu
B
Bo-Fei Xue *
J
Jie Zhong *
J
Juan Zhao *
DOI:10.1021/acsami.6c06730delete
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Abstract

Abstract

En 中文
Semitransparent perovskite solar cells require top electrodes that are transparent, conductive, and stable, yet bare AgNW networks suffer from high junction resistance and oxidation in air. Here, we combine spray-coated AgNWs with a sputtered indium zinc oxide overlayer on an ALD-SnOx buffer layer to create an oxidation-retarded AgNWs/IZO composite electrode. By tuning AgNW coverage and IZO thickness, the electrode can be adjusted over a broad optoelectronic window, with an average near-infrared transmittance of 85.4–88.8%, a sheet resistance of 5–15 Ω/□, and a maximum figure of merit of 383.5. The IZO overlayer bridges nanowire junctions, smooths the surface, and retards air-induced degradation. As a result, haze is reduced to 1.53%, and resistance increases by less than 10% after 3 months in air. Using the optimized electrode, 1.68 eV semitransparent devices achieved a power conversion efficiency of 18.4%, while 2T perovskite/TOPCon tandems reach 28.3% with T90 ≥ 800 h.
Keywords:
Electrodes
Layers
Optical properties
Perovskites
Solar cells
semitransparent perovskite solar cells
transparent top electrode
silver nanowires
indium zinc oxide
sputtering damage mitigation
perovskite/silicon tandem

Journal

A
ACS Applied Materials & Interfaces
IF:
0
Papers:
1.6K
Citations:
0

Organization

W
wuhan university of technology
Scholars:
6.0K
Papers: 1.8K
Citations: 0
F
Foshan Xianhu Laboratory
Scholars:
546
Papers: 351
Citations: 8
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