The structure and chemical composition of Ga2O3 oxide prepared by annealing of Ga2Se3 crystals
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2022-02-07 11:44
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SPRINCEAN, Veaceslav, VATAVU-CUCULESCU, Elmira, DMITROGLO, Liliana, UNTILA, Dumitru, CARAMAN, Iuliana, CARAMAN, Mihail. The structure and chemical composition of Ga2O3 oxide prepared by annealing of Ga2Se3 crystals. In: IFMBE Proceedings: . 4th International Conference on Nanotechnologies and Biomedical Engineering, Ed. 4, 18-21 septembrie 2019, Chişinău. Switzerland: Springer Nature Switzerland AG, 2020, Ediția 4, Vol.77, pp. 207-211. ISBN 978-303031865-9. ISSN 16800737. DOI: https://doi.org/10.1007/978-3-030-31866-6_42
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IFMBE Proceedings
Ediția 4, Vol.77, 2020
Conferința "Conference on Nanotechnologies and Biomedical Engineering"
4, Chişinău, Moldova, 18-21 septembrie 2019

The structure and chemical composition of Ga2O3 oxide prepared by annealing of Ga2Se3 crystals

DOI: https://doi.org/10.1007/978-3-030-31866-6_42

Pag. 207-211

Sprincean Veaceslav1, Vatavu-Cuculescu Elmira1, Dmitroglo Liliana1, Untila Dumitru1, Caraman Iuliana2, Caraman Mihail1
 
1 Moldova State University,
2 "Vasile Alecsandri" University of Bacau
 
Proiect:
GA 810652

Promoting smart specialization at the Technical University of Moldova by developing the field of Novel Nanomaterials for BioMedical Applications through excellence in research and twinning


 
Disponibil în IBN: 1 noiembrie 2020


Rezumat

The chemical composition and structure of Ga2O3 obtained by thermal treatment (TT) in air of β-Ga2Se3 crystals were studied using the X-ray diffraction (XRD) method, Raman spectroscopy, EDX, and SEM. The surface of the Ga2Se3 crystal air annealed at 770 K is covered by β-Ga2O3 layer of microcrystallites and as well as by β-Ga2Se3 crystallites. The oxygen is non-homogeniously distributed on the surface of the 770 K annealed sample. The sample obtained by TT at 1150 K consists of nanolamella, nanotowers, and nanobars of β-Ga2O3, their size being estimated to 10–200 nm.

Cuvinte-cheie
Annealing, Biomedical engineering, crystal structure, Crystallites, energy dispersive spectroscopy, nanotechnology, scanning electron microscopy, Selenium compounds, X ray diffraction