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All-Inorganic Hydrothermally Processed Semitransparent Sb 2 S 3 Solar Cells with CuSCN as the Hole Transport Layer.
- Source :
-
ACS applied energy materials [ACS Appl Energy Mater] 2024 Feb 05; Vol. 7 (4), pp. 1421-1432. Date of Electronic Publication: 2024 Feb 05 (Print Publication: 2024). - Publication Year :
- 2024
-
Abstract
- An inorganic wide-bandgap hole transport layer (HTL), copper(I) thiocyanate (CuSCN), is employed in inorganic planar hydrothermally deposited Sb <subscript>2</subscript> S <subscript>3</subscript> solar cells. With excellent hole transport properties and uniform compact morphology, the solution-processed CuSCN layer suppresses the leakage current and improves charge selectivity in an n-i-p-type solar cell structure. The device without the HTL (FTO/CdS/Sb <subscript>2</subscript> S <subscript>3</subscript> /Au) delivers a modest power conversion efficiency (PCE) of 1.54%, which increases to 2.46% with the introduction of CuSCN (FTO/CdS/Sb <subscript>2</subscript> S <subscript>3</subscript> /CuSCN/Au). This PCE is a significant improvement compared with the previous reports of planar Sb <subscript>2</subscript> S <subscript>3</subscript> solar cells employing CuSCN. CuSCN is therefore a promising alternative to expensive and inherently unstable organic HTLs. In addition, CuSCN makes an excellent optically transparent (with average transmittance >90% in the visible region) and shunt-blocking HTL layer in pinhole-prone ultrathin (<100 nm) semitransparent absorber layers grown by green and facile hydrothermal deposition. A semitransparent device is fabricated using an ultrathin Au layer (∼10 nm) with a PCE of 2.13% and an average visible transmittance of 13.7%.<br />Competing Interests: The authors declare no competing financial interest.<br /> (© 2024 The Authors. Published by American Chemical Society.)
Details
- Language :
- English
- ISSN :
- 2574-0962
- Volume :
- 7
- Issue :
- 4
- Database :
- MEDLINE
- Journal :
- ACS applied energy materials
- Publication Type :
- Academic Journal
- Accession number :
- 38425380
- Full Text :
- https://doi.org/10.1021/acsaem.3c02492