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Cu2SnS3 Thin-Film Solar Cells from Electroplated Precursors
Cu 2 SnS 3 (CTS) contains non-rare metals and it has suitable optical characteristics for the absorber layer of thin-film solar cells. In this study, CTS thin films were fabricated by sulfurizing Cu--Sn precursors deposited by co-electrodeposition. Solar cells with a structure glass/Mo/CTS/CdS/ZnO:A...
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Published in: | Jpn J Appl Phys 2012-10, Vol.51 (10), p.10NC34-10NC34-3 |
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container_end_page | 10NC34-3 |
container_issue | 10 |
container_start_page | 10NC34 |
container_title | Jpn J Appl Phys |
container_volume | 51 |
creator | Koike, Junpei Chino, Kotaro Aihara, Naoya Araki, Hideaki Nakamura, Ryota Jimbo, Kazuo Katagiri, Hironori |
description | Cu 2 SnS 3 (CTS) contains non-rare metals and it has suitable optical characteristics for the absorber layer of thin-film solar cells. In this study, CTS thin films were fabricated by sulfurizing Cu--Sn precursors deposited by co-electrodeposition. Solar cells with a structure glass/Mo/CTS/CdS/ZnO:Al/Al were fabricated from the films. The best cell had an efficiency of 2.84%. A relatively high conversion efficiency was obtained from films with $\text{Cu/Sn}\leq 2$. |
doi_str_mv | 10.1143/JJAP.51.10NC34 |
format | article |
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In this study, CTS thin films were fabricated by sulfurizing Cu--Sn precursors deposited by co-electrodeposition. Solar cells with a structure glass/Mo/CTS/CdS/ZnO:Al/Al were fabricated from the films. The best cell had an efficiency of 2.84%. A relatively high conversion efficiency was obtained from films with $\text{Cu/Sn}\leq 2$.</abstract><pub>The Japan Society of Applied Physics</pub><doi>10.1143/JJAP.51.10NC34</doi></addata></record> |
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title | Cu2SnS3 Thin-Film Solar Cells from Electroplated Precursors |
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