Toward Highly Efficient Inkjet‐Printed Perovskite Solar Cells Fully Processed Under Ambient Conditions and at Low Temperature. Issue 11 (9th October 2018)
- Record Type:
- Journal Article
- Title:
- Toward Highly Efficient Inkjet‐Printed Perovskite Solar Cells Fully Processed Under Ambient Conditions and at Low Temperature. Issue 11 (9th October 2018)
- Main Title:
- Toward Highly Efficient Inkjet‐Printed Perovskite Solar Cells Fully Processed Under Ambient Conditions and at Low Temperature
- Authors:
- Gheno, Alexandre
Huang, Yong
Bouclé, Johann
Ratier, Bernard
Rolland, Alain
Even, Jacky
Vedraine, Sylvain - Abstract:
- Abstract : Considering the recent advances in the fundamental understanding of perovskite devices as well as in the demonstration of larger stability under working conditions, specific attention has still to be paid for their processing for low‐cost applications. Here, the successful demonstration of 10.7% efficient chlorine‐doped methylammonium lead iodide (CH3 NH3 PbI3‐x Clx ) solar cells based on a fully inkjet‐printed processed under ambient conditions and at low temperature (<90 °C) is reported. A huge hysteresis is observed and the efficiency drops down to 6.4% for the forward scan. The Owens–Wendt–Rabel and Kaelble model is applied to investigate the impact of chloride, bromide, or diiodooctane on the perovskite ink wetting properties. A low surface energy of the substrate provokes dewetting during the perovskite printing. The use of chlorine or bromide tends to increase the wettability of the perovskite ink, improving the impregnation of the ink in porous materials. This work shows the critical importance of properly storing these substrates prior to active layer deposition, in order to produce homogenous layers by inkjet‐printing. The successful printing of all inner layers, excluding bottom and top electrodes, in ambient atmosphere is an additional step toward their expected development at a larger scale by the printed electronic industry. Abstract : This study investigates the impact of chloride, bromide, or diiodooctane on the perovskite ink wetting properties,Abstract : Considering the recent advances in the fundamental understanding of perovskite devices as well as in the demonstration of larger stability under working conditions, specific attention has still to be paid for their processing for low‐cost applications. Here, the successful demonstration of 10.7% efficient chlorine‐doped methylammonium lead iodide (CH3 NH3 PbI3‐x Clx ) solar cells based on a fully inkjet‐printed processed under ambient conditions and at low temperature (<90 °C) is reported. A huge hysteresis is observed and the efficiency drops down to 6.4% for the forward scan. The Owens–Wendt–Rabel and Kaelble model is applied to investigate the impact of chloride, bromide, or diiodooctane on the perovskite ink wetting properties. A low surface energy of the substrate provokes dewetting during the perovskite printing. The use of chlorine or bromide tends to increase the wettability of the perovskite ink, improving the impregnation of the ink in porous materials. This work shows the critical importance of properly storing these substrates prior to active layer deposition, in order to produce homogenous layers by inkjet‐printing. The successful printing of all inner layers, excluding bottom and top electrodes, in ambient atmosphere is an additional step toward their expected development at a larger scale by the printed electronic industry. Abstract : This study investigates the impact of chloride, bromide, or diiodooctane on the perovskite ink wetting properties, as well as the storage of the substrates. All of the inner layer is inkjet‐printed and annealed at low temperature. This leads to the successful demonstration of 10.7% efficient chlorine‐doped methylammonium lead iodide solar cells. … (more)
- Is Part Of:
- Solar RRL. Volume 2:Issue 11(2018)
- Journal:
- Solar RRL
- Issue:
- Volume 2:Issue 11(2018)
- Issue Display:
- Volume 2, Issue 11 (2018)
- Year:
- 2018
- Volume:
- 2
- Issue:
- 11
- Issue Sort Value:
- 2018-0002-0011-0000
- Page Start:
- n/a
- Page End:
- n/a
- Publication Date:
- 2018-10-09
- Subjects:
- chlorine -- inkjet -- perovskite solar cells -- printed electronics -- storage -- wettability
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.201800191 ↗
- Languages:
- English
- ISSNs:
- 2367-198X
- Deposit Type:
- Legaldeposit
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