Enhanced optoelectronic quality of perovskite thin films with hypophosphorous acid for planar heterojunction solar cells

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作者
Wei Zhang
Sandeep Pathak
Nobuya Sakai
Thomas Stergiopoulos
Pabitra K. Nayak
Nakita K. Noel
Amir A. Haghighirad
Victor M. Burlakov
Dane W. deQuilettes
Aditya Sadhanala
Wenzhe Li
Liduo Wang
David S. Ginger
Richard H. Friend
Henry J. Snaith
机构
[1] Clarendon Laboratory,Department of Physics
[2] University of Oxford,Department of Chemistry
[3] Mathematical Institute,Department of Physics
[4] University of Oxford,Department of Chemistry
[5] University of Washington,undefined
[6] Cavendish Laboratory,undefined
[7] University of Cambridge,undefined
[8] Tsinghua University,undefined
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Solution-processed metal halide perovskite semiconductors, such as CH3NH3PbI3, have exhibited remarkable performance in solar cells, despite having non-negligible density of defect states. A likely candidate is halide vacancies within the perovskite crystals, or the presence of metallic lead, both generated due to the imbalanced I/Pb stoichiometry which could evolve during crystallization. Herein, we show that the addition of hypophosphorous acid (HPA) in the precursor solution can significantly improve the film quality, both electronically and topologically, and enhance the photoluminescence intensity, which leads to more efficient and reproducible photovoltaic devices. We demonstrate that the HPA can reduce the oxidized I2 back into I−, and our results indicate that this facilitates an improved stoichiometry in the perovskite crystal and a reduced density of metallic lead.
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