Preparation and characterization of GaP colloidal nanoparticles and films
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PYSHKIN, Serghei, RUSU, Emil, IACOB, Mihail, URSACHI, Veaceslav, GUTSUL, Tatiana, BALLATO, John. Preparation and characterization of GaP colloidal nanoparticles and films. In: Nanotechnologies and Biomedical Engineering, Ed. 2, 18-20 aprilie 2013, Chișinău. Technical University of Moldova, 2013, Editia 2, pp. 353-356. ISBN 978-9975-62-343-8..
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Nanotechnologies and Biomedical Engineering
Editia 2, 2013
Conferința "International Conference on Nanotechnologies and Biomedical Engineering"
2, Chișinău, Moldova, 18-20 aprilie 2013

Preparation and characterization of GaP colloidal nanoparticles and films


Pag. 353-356

Pyshkin Serghei123, Rusu Emil4, Iacob Mihail5, Ursachi Veaceslav1, Gutsul Tatiana5, Ballato John23
 
1 Institute of Applied Physics, Academy of Sciences of Moldova,
2 Center for Opical Materials Science and Engineering Technologies, Clemson University,
3 School of Material Science and Engineering, Clemson University,
4 Institute of the Electronic Engineering and Nanotechnologies "D. Ghitu" of the Academy of Sciences of Moldova,
5 Institute of Chemistry of the Academy of Sciences of Moldova
 
 
Disponibil în IBN: 20 iunie 2019


Rezumat

In this communication, we present results of investigations of the influence of technological conditions upon the properties of GaP nanoparticles produced by using a new precursor as a source of Ga atoms. The obtained nanoparticles were investigated by means of XRD, EDAX, and ТЕМ as well as by means of Raman light scattering and photoluminescence spectroscopy. The sizes of nanoparticles obtained with gallium acetylacetonate as a source of gallium are in the range of 10 – 40 nm according to estimations from TEM analysis. These values correlate with the position of the short-wavelength emission maximum in the photoluminescence spectra. A method of electrophoretic deposition of GaP nanoparticles from colloidal organosol solutions was elaborated. Raman spectra and XRD patterns, as well as optical transmission spectra have been measured for layers of GaP nanoparticles produced by this method.

Cuvinte-cheie
GAP, nanoparticles, electrophoretic deposition, spectroscopy