Please use this identifier to cite or link to this item: http://cris.utm.md/handle/5014/1235
Title: Large-Sized Nanocrystalline Ultrathin β-Ga2O3 Membranes Fabricated by Surface Charge Lithography
Authors: CIOBANU, Vladimir 
CECCONE, Giacomo 
JIN, Irina 
BRANISTE, Tudor 
YE, Fei 
FUMAGALLI, Francesco 
COLPO, Pascal 
DUTTA, Joydeep 
LINNROS, Jan 
TIGINYANU, Ion 
Keywords: β-Ga2 O3;Surface Charge Lithography;ultrathin nanomembranes;phase transformation
Issue Date: 2022
Source: Ciobanu, Vladimir, Giacomo Ceccone, Irina Jin, Tudor Braniste, Fei Ye, Francesco Fumagalli, Pascal Colpo, Joydeep Dutta, Jan Linnros, and Ion Tiginyanu. 2022. "Large-Sized Nanocrystalline Ultrathin β-Ga2O3 Membranes Fabricated by Surface Charge Lithography" Nanomaterials 12, no. 4: 689. https://doi.org/10.3390/nano12040689
Project: 20.80009.5007.20. Nanoarhitecturi în bază de GaN şi matrici tridimensionale din materiale biologice pentru aplicaţii în microfluidică şi inginerie tisulară 
NanoMedTwin - 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 
Journal: Nanomaterials 2022
Abstract: 
Large-sized 2D semiconductor materials have gained significant attention for their fascinating properties in various applications. In this work, we demonstrate the fabrication of nanoperforated ultrathin β-Ga2O3 membranes of a nanoscale thickness. The technological route includes the fabrication of GaN membranes using the Surface Charge Lithography (SCL) approach and subsequent thermal treatment in air at 900 °C in order to obtain β-Ga2O3 membranes. The as-grown GaN membranes were discovered to be completely transformed into β-Ga2O3, with the morphology evolving from a smooth topography to a nanoperforated surface consisting of nanograin structures. The oxidation mechanism of the membrane was investigated under different annealing conditions followed by XPS, AFM, Raman and TEM analyses.
URI: http://cris.utm.md/handle/5014/1235
DOI: https://doi.org/10.3390/nano12040689
Appears in Collections:Journal Articles

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