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July 8, 2015ACS Applied Materials & Interfaces353 citations

Enhancing Stability of Perovskite Solar Cells to Moisture by the Facile Hydrophobic Passivation

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IHInsung HwangKorea Electrotechnology Research InstituteIJInyoung JeongSeoul National UniversityJLJinwoo LeeUlsan College

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Abstract

In this study, a novel and facile passivation process for a perovskite solar cell is reported. Poor stability in ambient atmosphere, which is the most critical demerit of a perovskite solar cell, is overcome by a simple passivation process using a hydrophobic polymer layer. Teflon, the hydrophobic polymer, is deposited on the top of a perovskite solar cell by a spin-coating method. With the hydrophobic passivation, the perovskite solar cell shows negligible degradation after a 30 day storage in ambient atmosphere. Suppressed degradation of the perovskite film is proved in various ways: X-ray diffraction, light absorption spectrum, and quartz crystal microbalance. This simple but effective passivation process suggests new kind of approach to enhance stability of perovskite solar cells to moisture.

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Hwang et al. (2015) studied this question.

synapsesocial.com/papers/6a0168aad3626c3061f6d2dchttps://doi.org/10.1021/acsami.5b04490
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