Novel Physical Vapor Deposition Approach to Hybrid Perovskites: Growth of MAPbI 3 Thin Films by RF-Magnetron Sputtering

SCIENTIFIC REPORTS(2018)

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摘要
Solution-based methods represent the most widespread approach used to deposit hybrid organic-inorganic perovskite films for low-cost but efficient solar cells. However, solution-process techniques offer limited control over film morphology and crystallinity, and most importantly do not allow sequential film deposition to produce perovskite-perovskite heterostructures. Here the successful deposition of CH 3 NH 3 PbI 3 (MAPI) thin films by RF-magnetron sputtering is reported, an industry-tested method to grow large area devices with precisely controlled stoichiometry. MAPI films are grown starting from a single-target made of CH 3 NH 3 I (MAI) and PbI 2 . Films are single-phase, with a barely detectable content of unreacted PbI 2 , full surface coverage and thickness ranging from less than 200 nm to more than 3 μm. Light absorption and emission properties of the deposited films are comparable to as-grown solution-processed MAPI films. The development of vapor-phase deposition methods is of interest to advance perovskite photovoltaic devices with the possibility of fabricating perovskite multijunction solar cells or multicolor bright light-emitting devices in the whole visible spectrum.
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关键词
Hybrid Perovskite,Physical Vapor Deposition Approach,Vapor Phase Deposition Method,Perovskite Films,Full Surface Coverage
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