Precisely Controlled Hydration Water for Performance Improvement of Organic-Inorganic Perovskite Solar Cells
Recently, intensive studies on the role of water molecule in the formation of organic–inorganic perovskite film have been reported. However, not only the contradictive phenomena but also the complex processing technique has hindered the widespread use of water molecule in perovskite preparation. Her...
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Veröffentlicht in: | Advanced functional materials 2016-07, Vol.26 (28), p.5028-5034 |
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Sprache: | eng |
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Zusammenfassung: | Recently, intensive studies on the role of water molecule in the formation of organic–inorganic perovskite film have been reported. However, not only the contradictive phenomena but also the complex processing technique has hindered the widespread use of water molecule in perovskite preparation. Here the hydration water is introduced into the precursors instead of water. By precisely controlling the content of hydration water, a smoother and more uniform perovskite film is obtained through a simple one‐step spin coating method. The improvement of perovskite film quality leads to highly efficient planar perovskite solar cells. Summing up the device studies and the investigation of morphology, crystallization, and optical properties, the impact of water molecule in the formation of perovskite crystal and consequences of device performance is understood. Due to its universal adaptability and simplified process, precise control of hydration water is therefore of great utility to high quality perovskite films fabrication and large‐scale production of this upcoming photovoltaic technology.
The content of hydration water is carefully controlled in precursor solution. The findings reveal that the hydration water has played an essential role in the formation of perovskite film. With an optimum amount of hydration water, a high quality perovskite film with better uniformity and smoother surface is formed. Based on it, an efficient perovskite solar cell is fabricated. |
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ISSN: | 1616-301X 1616-3028 1616-3028 |
DOI: | 10.1002/adfm.201601557 |