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- W1876704195 abstract "This study demonstrates the power conversion efficiency enhancement on In0.19Ga0.81As/GaAs quantum well solar cells (QWSC). The solar cell structure was grown on n-type (100)-oriented GaAs substrate by using solid-source molecular beam epitaxy technique and divided into square pieces. In order to understand whether the eight quantum wells were grown or not, scanning electron microscopy (SEM), and secondary ion mass spectrometry characterizations were done at room temperature. After that, the Si3N4 antireflection layers were coated onto both two square pieces of In0.19Ga0.81As/GaAs QWSC structure and p-GaAs substrate at different temperatures by the radio frequency magnetron sputtering system. The optical properties of the Si3N4 coated and uncoated p-GaAs samples have been evaluated by means of ultraviolet-visible spectrometry measurements at room temperature. According to ultraviolet-visible spectrometry results, the best Si3N4 antireflection coated one was obtained at 100 °C substrate temperature. Thus, ..." @default.
- W1876704195 created "2016-06-24" @default.
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- W1876704195 date "2015-10-27" @default.
- W1876704195 modified "2023-09-23" @default.
- W1876704195 title "Efficiency improvement of quantum well solar cell with the AuGeNi metallization and Si3N4ARC design" @default.
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- W1876704195 doi "https://doi.org/10.1080/14786435.2015.1099756" @default.
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