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- W2524217070 abstract "The effects of electron and hole transport layer with the electrode work function on perovskite solar cells with the interface defects were simulated by using analysis of microelectronic and photonic structures-one-dimensional (AMPS-1D) software. The simulation results suggest that TiO 2 electron transport layer provides best device performance with conversion efficiency of 25.9% compared with ZnO and CdS. The threshold value of back electrode work function for Spiro-OMeTAD, NiO, CuI and Cu 2 O hole transport layer are calculated to be 4.9, 4.8, 4.7 and 4.9 eV, respectively, to reach the highest conversion efficiency. The mechanisms of device physics with various electron and hole transport materials are discussed in details. The device performance deteriorates gradually as the increased density of interface defects located at ETM/absorber or absorber/HTM. This research results can provide helpful guidance for materials and metal electrode choice for perovskite solar cells." @default.
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- W2524217070 date "2016-10-10" @default.
- W2524217070 modified "2023-10-09" @default.
- W2524217070 title "The effects of electron and hole transport layer with the electrode work function on perovskite solar cells" @default.
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- W2524217070 doi "https://doi.org/10.1142/s0217984916503413" @default.
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