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Efficient n-i-p Monolithic Perovskite/Silicon Tandem Solar Cells with Tin Oxide via a Chemical Bath Deposition Method

Authors
Hyun, JiyeonYeom, Kyung MunLee, Ha EunKim, DonghwanLee, Hae-SeokNoh, Jun HongKang, Yoonmook
Issue Date
11월-2021
Publisher
MDPI
Keywords
tin oxide; chemical bath deposition; perovskite/silicon; tandem solar cells
Citation
ENERGIES, v.14, no.22
Indexed
SCIE
SCOPUS
Journal Title
ENERGIES
Volume
14
Number
22
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/135935
DOI
10.3390/en14227614
ISSN
1996-1073
Abstract
Tandem solar cells, based on perovskite and crystalline silicon absorbers, are promising candidates for commercial applications. Tin oxide (SnO2), applied via the spin-coating method, has been among the most used electron transfer layers in normal (n-i-p) perovskite/silicon tandem cells. SnO2 synthesized by chemical bath deposition (CBD) has not yet been applied in tandem devices. This method shows improved efficiency in perovskite single cells and allows for deposition over a larger area. Our study is the first to apply low-temperature processed SnO2 via CBD to a homojunction silicon solar cell without additional deposition of a recombination layer. By controlling the reaction time, a tandem efficiency of 16.9% was achieved. This study shows that tandem implementation is possible through the CBD method, and demonstrates the potential of this method in commercial application to textured silicon surfaces with large areas.
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Graduate School of Energy and Environment (KU-KIST GREEN SCHOOL) > Department of Energy and Environment > 1. Journal Articles

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