4.5 Article

Theoretical and Experimental Study of Methyl Ammonium Antimony Iodide-Based Lead-Free Perovskite Solar Cells

期刊

ENERGIES
卷 16, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/en16010236

关键词

SCAPS_1D; MA(3)Sb(2)I(9); absorber material; lead-free perovskite solar cells

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This article reports on the simulation of FTO/TiO2/MA(3)Sb(2)I(9)/spiro-OMeTAD solar cells. The thickness of the absorber layer, hole-transport layer, or electron-transport layer was varied during the simulation process and the optimized solar cells demonstrated a high efficiency of 14.90% and an open circuit voltage of 1.41 V.
Methyl ammonium antimony iodide (MA(3)Sb(2)I(9)) perovskite-like materials have gained enormous attention from the scientific community because of their excellent aerobic stability, good optical properties, and less-toxic nature. Herein, we report on the simulation of FTO/TiO2/MA(3)Sb(2)I(9)/spiro-OMeTAD via solar cell capacitance (SCAPS) software. The thickness of the absorber layer, hole-transport layer, or electron-transport layer may significantly impact the photovoltaic performance of the perovskite solar cells (PSCs). In this connection, the thickness of the absorber layer, hole-transport layer, or electron-transport layer was varied during the simulation process and the optimized PSCs demonstrated a good efficiency of 14.90% including an excellent open circuit voltage (Voc) of 1.41 V. Furthermore, we also fabricated MA(3)Sb(2)I(9)-based PSCs and their photovoltaic performance was evaluated. The fabricated PSCs showed a reasonably good efficiency of 1.27% and Voc of 0.51 V.

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