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Vertical plane depth-resolved surface potential and carrier separation characteristics in flexible CZTSSe solar cells with over 12% efficiency

Title
Vertical plane depth-resolved surface potential and carrier separation characteristics in flexible CZTSSe solar cells with over 12% efficiency
Authors
SonDae-HoParkHa KyungKimDae-HwanKangJin-KyuSungShi-JoonHwangDae-KueLeeJaebaekJeonDong-HwanChoYunaeJoWilliamTaeseonJunHoNamSang-HoonYangKee-Jeong
Ewha Authors
조윌렴
SCOPUS Author ID
조윌렴scopus
Issue Date
2024
Journal Title
Carbon Energy
ISSN
2637-9368JCR Link
Citation
Carbon Energy vol. 6, no. 3
Keywords
carrier separationCZTSSeflexible solar celllocal currentsurface potential
Publisher
John Wiley and Sons Inc
Indexed
SCIE; SCOPUS scopus
Document Type
Article
Abstract
Cu2ZnSn(S,Se)4 (CZTSSe) solar cells have resource distribution and economic advantages. The main cause of their low efficiency is carrier loss resulting from recombination of photo-generated electron and hole. To overcome this, it is important to understand their electron-hole behavior characteristics. To determine the carrier separation characteristics, we measured the surface potential and the local current in terms of the absorber depth. The elemental variation in the intragrains (IGs) and at the grain boundaries (GBs) caused a band edge shift and bandgap (Eg) change. At the absorber surface and subsurface, an upward Ec and Ev band bending structure was observed at the GBs, and the carrier separation was improved. At the absorber center, both upward Ec and Ev and downward Ec-upward Ev band bending structures were observed at the GBs, and the carrier separation was degraded. To improve the carrier separation and suppress carrier recombination, an upward Ec and Ev band bending structure at the GBs is desirable. © 2024 The Authors. Carbon Energy published by Wenzhou University and John Wiley & Sons Australia, Ltd.
DOI
10.1002/cey2.434
Appears in Collections:
자연과학대학 > 물리학전공 > Journal papers
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