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To push perovskite solar cell (PSC) technology toward practical applications, large-area perovskite solar modules with multiple subcells need to be developed by fully scalable deposition approaches. Here, we demonstrate a deposition scheme for perovskite module fabrication with spray coating of a TiO 2 electron transport layer (ETL) and blade coating of both a perovskite absorber layer and a spiro-OMeTAD-based hole transport layer (HTL). The TiO 2 ETL remaining in the interconnection between subcells significantly affects the module performance. Reducing the TiO 2 thickness changes the interconnection contact from a Schottky diode to ohmic behavior. Owing to interconnection resistance reduction, the perovskite modules with a 10 nm TiO 2 layer show enhanced performance mainly associated with an improved fill factor. Finally, we demonstrate a four-cell MA 0.7 FA 0.3 PbI 3 perovskite module with a stabilized power conversion efficiency (PCE) of 15.6% measured from an aperture area of ∼10.36 cm 2, corresponding to an active-area module PCE of 17.9% with a geometric fill factor of ∼87.3%.
Yang et al. (2018) studied this question.