Green Atmospheric Aqueous Solution Deposition for High Performance Cu2ZnSn(S, Se)4 Thin Film Solar Cells. Issue 12 (7th October 2018)
- Record Type:
- Journal Article
- Title:
- Green Atmospheric Aqueous Solution Deposition for High Performance Cu2ZnSn(S, Se)4 Thin Film Solar Cells. Issue 12 (7th October 2018)
- Main Title:
- Green Atmospheric Aqueous Solution Deposition for High Performance Cu2ZnSn(S, Se)4 Thin Film Solar Cells
- Authors:
- Tian, Qingwen
Lu, Haiyang
Du, Yachao
Fu, Junjie
Zhao, Xiangyun
Wu, Sixin
Liu, Shengzhong (Frank) - Abstract:
- Abstract : Environment‐friendly process, low production cost, and simple operation are regarded as key factors for scalable kesterite photovoltaic applications. Herein a green ammonium thioglycolate (TGAm)‐based aqueous solution route has been developed to deposit Cu2 ZnSnS4 films. It is found that sinstering in ambient air is as good as in argon, making the production process more affordable and reproducible. TGAm is more active than other alkylthiols with longer alkyl chains and has a strong coordination capability toward metal ions, which is a key factor in the dissolution of a series of metal oxides. Meanwhile, TGAm is widely used in biopharmaceuticals and hairspray, demonstrating good biological compatibility. Moreover, a low level of Ag doping can be successfully incorporated into the host lattice of the CZTSSe to form a homogeneous (Cu1−x, Agx )2 ZnSn(S, Se)4 (CAZTSSe) alloy material by this aqueous process. Benefiting from the effect of Ag doping, the initial power conversion efficiency is successfully enhanced from 5.86% ( x = 0) to 7.38% ( x = 2%). Abstract : An environment‐friendly ammonium thioglycolate‐based aqueous solution process is exploited to successfully deposit as‐prepared Cu2 ZnSnS4 films in ambient air. It is found that sinstering in ambient air is as good as in argon, making the fabrication process more affordable and reproducible. The low level of Ag doping (Cu1−x, Agx )2 ZnSn(S, Se)4 solar cells based on this green, low‐cost, and simple syntheticAbstract : Environment‐friendly process, low production cost, and simple operation are regarded as key factors for scalable kesterite photovoltaic applications. Herein a green ammonium thioglycolate (TGAm)‐based aqueous solution route has been developed to deposit Cu2 ZnSnS4 films. It is found that sinstering in ambient air is as good as in argon, making the production process more affordable and reproducible. TGAm is more active than other alkylthiols with longer alkyl chains and has a strong coordination capability toward metal ions, which is a key factor in the dissolution of a series of metal oxides. Meanwhile, TGAm is widely used in biopharmaceuticals and hairspray, demonstrating good biological compatibility. Moreover, a low level of Ag doping can be successfully incorporated into the host lattice of the CZTSSe to form a homogeneous (Cu1−x, Agx )2 ZnSn(S, Se)4 (CAZTSSe) alloy material by this aqueous process. Benefiting from the effect of Ag doping, the initial power conversion efficiency is successfully enhanced from 5.86% ( x = 0) to 7.38% ( x = 2%). Abstract : An environment‐friendly ammonium thioglycolate‐based aqueous solution process is exploited to successfully deposit as‐prepared Cu2 ZnSnS4 films in ambient air. It is found that sinstering in ambient air is as good as in argon, making the fabrication process more affordable and reproducible. The low level of Ag doping (Cu1−x, Agx )2 ZnSn(S, Se)4 solar cells based on this green, low‐cost, and simple synthetic route shows a power conversion efficiency of 7.38%. … (more)
- Is Part Of:
- Solar RRL. Volume 2:Issue 12(2018)
- Journal:
- Solar RRL
- Issue:
- Volume 2:Issue 12(2018)
- Issue Display:
- Volume 2, Issue 12 (2018)
- Year:
- 2018
- Volume:
- 2
- Issue:
- 12
- Issue Sort Value:
- 2018-0002-0012-0000
- Page Start:
- n/a
- Page End:
- n/a
- Publication Date:
- 2018-10-07
- Subjects:
- aqueous solution process -- atmospheric deposition -- CZTSSe -- kesterite -- thin film solar cells
Solar energy -- Periodicals
Photovoltaic power generation -- Periodicals
Solar energy -- Research -- Periodicals
Photovoltaic power generation -- Research -- Periodicals
Periodicals
333.7923 - Journal URLs:
- http://resolver.library.ualberta.ca/resolver?ctx_enc=info%3Aofi%2Fenc%3AUTF-8&ctx_ver=Z39.88-2004&rfr_id=info%3Asid%2Fualberta.ca%3Aopac&rft.genre=journal&rft.object_id=3710000000966649&rft.issn=2367-198X&rft.eissn=2367-198X&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&url_ctx_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Actx&url_ver=Z39.88-2004 ↗
http://resolver.library.ualberta.ca/resolver?ctx_enc=info%3Aofi%2Fenc%3AUTF-8&ctx_ver=Z39.88-2004&rfr_id=info%3Asid%2Fualberta.ca%3Aopac&rft.genre=journal&rft.object_id=3710000000966649&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&url_ctx_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Actx&url_ver=Z39.88-2004 ↗
http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)2367-198X/issues ↗
http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)2367-198X/issues ↗
http://onlinelibrary.wiley.com/ ↗ - DOI:
- 10.1002/solr.201800233 ↗
- Languages:
- English
- ISSNs:
- 2367-198X
- Deposit Type:
- Legaldeposit
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