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Updated: Nov 7, 2025

Developing High Performance GaP/Si Heterojunction Solar Cells
Published on: November 16, 2018
Structural Characterization of Al0.37In0.63N/AlN/p-Si (111) Heterojunctions Grown by RF Sputtering for Solar Cell
Arántzazu Núñez-Cascajero1,2, Fernando B Naranjo1, María de la Mata3
1Departamento de Electrónica, Universidad de Alcalá, GRIFO, 28871 Alcalá de Henares, Spain.
Abstract:
Compact Al0.37In0.63N layers were grown by radiofrequency sputtering on bare and 15 nm-thick AlN-buffered Si (111) substrates. The crystalline quality of the AlInN layers was studied by high-resolution X-ray diffraction measurements and transmission electron microscopy. Both techniques show an improvement of the structural properties when the AlInN layer is grown on a 15 nm-thick AlN buffer. The layer grown on bare silicon exhibits a thin amorphous interfacial layer between the substrate and the AlInN, which is not present in the layer grown on the AlN buffer layer. A reduction of the density of defects is also observed in the layer grown on the AlN buffer.
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