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Comparison of the Material Quality of AlxIn1-xN (x-0-0.50) Films Deposited on Si(100) and Si(111) at Low Temperature by Reactive RF Sputtering

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URI: http://hdl.handle.net/10498/28831

DOI: 10.3390/ma15207373

ISSN: 1996-1944

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Author/s
Sun, Michael; Blasco, Rodrigo; Nwodo, Julian; Mata Fernández, María de laAuthority UCA; Molina Rubio, Sergio IgnacioAuthority UCA; Ajay, Akhil; Monroy, Eva; Valdueza-Felip, Sirona; Naranjo, Fernando B.
Date
2022-10
Department
Ciencia de los Materiales e Ingeniería Metalúrgica y Química Inorgánica
Source
Materials, Vol. 15, Núm. 20, 2022
Abstract
AlxIn1-xN ternary semiconductors have attracted much interest for application in photovoltaic devices. Here, we compare the material quality of AlxIn1-xN layers deposited on Si with different crystallographic orientations, (100) and (111), via radio-frequency (RF) sputtering. To modulate their Al content, the Al RF power was varied from 0 to 225 W, whereas the In RF power and deposition temperature were fixed at 30 W and 300 degrees C, respectively. X-ray diffraction measurements reveal a c-axis-oriented wurtzite structure with no phase separation regardless of the Al content (x = 0-0.50), which increases with the Al power supply. The surface morphology of the AlxIn1-xN layers improves with increasing Al content (the root-mean-square roughness decreases from approximate to 12 to 2.5 nm), and it is similar for samples grown on both Si substrates. The amorphous layer (similar to 2.5 nm thick) found at the interface with the substrates explains the weak influence of their orientation on the properties of the AlxIn1-xN films. Simultaneously grown AlxIn1-xN-on-sapphire samples point to a residual n-type carrier concentration in the 10(20)-10(21) cm(-3) range. The optical band gap energy of these layers evolves from 1.75 to 2.56 eV with the increase in the Al. PL measurements of AlxIn1-xN show a blue shift in the peak emission when adding the Al, as expected. We also observe an increase in the FWHM of the main peak and a decrease in the integrated emission with the Al content in room-temperature PL measurements. In general, the material quality of the AlxIn1-xN films on Si is similar for both crystallographic orientations.
Subjects
AlInN; Si(100); Si(111); radio-frequency sputtering
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Atribución 4.0 Internacional
This work is under a Creative Commons License Atribución 4.0 Internacional

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