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On the identification of Sb2Se3 using Raman scattering
by
Vermang, B.
, Correia, M.R.
, Salomé, P.M.P.
, Fernandes, P.A.
, Cunha, J.M.V.
, Shongalova, A.
in
Antimony compounds
/ Antimony trioxide
/ Biomaterials
/ Characterization and Evaluation of Materials
/ Dependence
/ Identification
/ Lasers
/ Materials Engineering
/ Materials Science
/ Nanotechnology
/ Organic chemistry
/ Photovoltaic cells
/ Polymer Sciences
/ Power
/ Raman spectra
/ Research Letter
/ Research Letters
/ Selenides
/ Selenium
/ Studies
/ Thin films
/ X-ray diffraction
2018
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On the identification of Sb2Se3 using Raman scattering
by
Vermang, B.
, Correia, M.R.
, Salomé, P.M.P.
, Fernandes, P.A.
, Cunha, J.M.V.
, Shongalova, A.
in
Antimony compounds
/ Antimony trioxide
/ Biomaterials
/ Characterization and Evaluation of Materials
/ Dependence
/ Identification
/ Lasers
/ Materials Engineering
/ Materials Science
/ Nanotechnology
/ Organic chemistry
/ Photovoltaic cells
/ Polymer Sciences
/ Power
/ Raman spectra
/ Research Letter
/ Research Letters
/ Selenides
/ Selenium
/ Studies
/ Thin films
/ X-ray diffraction
2018
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On the identification of Sb2Se3 using Raman scattering
by
Vermang, B.
, Correia, M.R.
, Salomé, P.M.P.
, Fernandes, P.A.
, Cunha, J.M.V.
, Shongalova, A.
in
Antimony compounds
/ Antimony trioxide
/ Biomaterials
/ Characterization and Evaluation of Materials
/ Dependence
/ Identification
/ Lasers
/ Materials Engineering
/ Materials Science
/ Nanotechnology
/ Organic chemistry
/ Photovoltaic cells
/ Polymer Sciences
/ Power
/ Raman spectra
/ Research Letter
/ Research Letters
/ Selenides
/ Selenium
/ Studies
/ Thin films
/ X-ray diffraction
2018
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Journal Article
On the identification of Sb2Se3 using Raman scattering
2018
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Overview
Robust evidences are presented showing that the Raman mode around 250 cm−1 in the Sb2Se3 thin films does not belong to this binary compound. The laser power density dependence of the Raman spectrum revealed the formation of Sb2O3 for high values of laser intensity power density excitation under normal atmospheric conditions. To complement this study, the Sb2Se3 films were characterized by x-ray diffraction during in situ annealing. Both these measurements showed that the Sb2Se3 compound can be replaced by Sb2O3. A heat-assisted chemical process explains these findings. Furthermore, Raman conditions required to perform precise measurements are described.
Publisher
Cambridge University Press,Springer International Publishing,Springer Nature B.V
Subject
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