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- W4317396502 abstract "Oxide–metal–oxide (OMO)‐based stacks are highly attractive by virtue of their favorable properties for being used as a top transparent electrode (TE) in semitransparent solar cells. Herein, getting the best trade‐off between performance and transparency is focused on by optimizing the OMO electrode and the device layers with the help of optical simulation. NiO/Ag/SnO 2 as the OMO electrode integrated into a device having SnO 2 , Spiro‐OMeTAD, and MAPbI 3 as the electron transport layer, hole transport layer, and photoactive layer, respectively, in n–i–p geometry is investigated. It is shown that an optimized OMO electrode in terms of average visible transparency (AVT) does not translate to the best device performance. It is found that for the overcoat to undercoat oxide layer ratio of 1.17, a maximum short‐circuit current density ( J SC ) of 4.34 mA cm −2 is achieved while a maximum AVT of 21.55% is obtained for a ratio of 0.78. On further optimization of the MAPbI 3 thickness, for an oxide ratio of 1, a modeled device with 4.58 mA cm −2 with AVT of 31.55% is demonstrated. In addition, it is also found that by integrating an optical spacer layer after the OMO electrode, the J SC of the device shows a jump of >115% to 9.86 mA cm −2 ." @default.
- W4317396502 created "2023-01-19" @default.
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- W4317396502 date "2023-01-26" @default.
- W4317396502 modified "2023-10-01" @default.
- W4317396502 title "Oxide–Metal–Oxide Based Transparent Electrodes and Their Potential Application in Semitransparent Perovskite Solar Cells‐Optical Modeling Studies" @default.
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- W4317396502 doi "https://doi.org/10.1002/solr.202200863" @default.
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