The physical properties of (As2Se3)1-x:Snx and (As4S3Se3)1-x:Snx glasses

Experimental results on some physical and optical properties of (As2Se3)1-x:Snx and (As4S3Se3)1-x:Snx (x = 0÷10 at %) glasses and amorphous films (d~2.0 µm) are presented. The bulk chalcogenide glasses are studied by X-ray diffraction spectroscopy and nanoindentation methods. It is established that...

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Autores principales: Iaseniuc, Oxana, Harea, Diana, Harea, Evghenii, Volodina, Galina, Iovu, Mihail
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Publicado: D.Ghitu Institute of Electronic Engineering and Nanotechnologies 2013
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spelling oai:doaj.org-article:6bb990282eb54ae0aaa975580cdee43b2021-11-21T11:59:44ZThe physical properties of (As2Se3)1-x:Snx and (As4S3Se3)1-x:Snx glasses2537-63651810-648Xhttps://doaj.org/article/6bb990282eb54ae0aaa975580cdee43b2013-06-01T00:00:00Zhttps://mjps.nanotech.md/archive/2013/article/29782https://doaj.org/toc/1810-648Xhttps://doaj.org/toc/2537-6365Experimental results on some physical and optical properties of (As2Se3)1-x:Snx and (As4S3Se3)1-x:Snx (x = 0÷10 at %) glasses and amorphous films (d~2.0 µm) are presented. The bulk chalcogenide glasses are studied by X-ray diffraction spectroscopy and nanoindentation methods. It is established that the addition of these amounts of tin (x = 0÷10 at %) does not lead to significant changes in the physical properties of the glass, such as values of stress and Young’s modulus related to the modification of the density and compactness. The XRD measurements show that the Sn impurities in the (As4S3Se3)1-x:Snx do not significantly change the shape of the first sharp diffraction peak (FSDP) of the X-ray diffraction patterns either; the intensity and the position of the FSDP nonmonotonically depend on the Sn concentration. It has been found that the addition of these amounts of tin in (As4S3Se3)1-x:Snx does not lead to significant changes in the glass physical properties, such as values of stress and Young’s modulus related to the modification of the density and compactness. The study of the photoplastic effect is performed in situ, with illumination of the bulk and thin film samples during indentation as well as their indentation after illumination with a green laser (λ = 532 nm) at a power of P = 50 mV/cm2. The hardness is calculated from load-displacement curves by the Oliver-Pharr method. A sharp increase in hardness is registered if the tin concentration exceeds a value of 34% Sn. The hardness H of (As2Se3)1-x:Snx films varies between 115 and 130 kg/mm2. It is found that the hardness H of amorphous thin films is generally higher than the hardness of bulk samples with the same chemical composition. In this study, we are focused on the mechanical characteristics of high-purity As2Se3:Snx thin films.Iaseniuc, OxanaHarea, DianaHarea, EvgheniiVolodina, GalinaIovu, MihailD.Ghitu Institute of Electronic Engineering and NanotechnologiesarticlePhysicsQC1-999ElectronicsTK7800-8360ENMoldavian Journal of the Physical Sciences, Vol 12, Iss 3-4, Pp 181-191 (2013)
institution DOAJ
collection DOAJ
language EN
topic Physics
QC1-999
Electronics
TK7800-8360
spellingShingle Physics
QC1-999
Electronics
TK7800-8360
Iaseniuc, Oxana
Harea, Diana
Harea, Evghenii
Volodina, Galina
Iovu, Mihail
The physical properties of (As2Se3)1-x:Snx and (As4S3Se3)1-x:Snx glasses
description Experimental results on some physical and optical properties of (As2Se3)1-x:Snx and (As4S3Se3)1-x:Snx (x = 0÷10 at %) glasses and amorphous films (d~2.0 µm) are presented. The bulk chalcogenide glasses are studied by X-ray diffraction spectroscopy and nanoindentation methods. It is established that the addition of these amounts of tin (x = 0÷10 at %) does not lead to significant changes in the physical properties of the glass, such as values of stress and Young’s modulus related to the modification of the density and compactness. The XRD measurements show that the Sn impurities in the (As4S3Se3)1-x:Snx do not significantly change the shape of the first sharp diffraction peak (FSDP) of the X-ray diffraction patterns either; the intensity and the position of the FSDP nonmonotonically depend on the Sn concentration. It has been found that the addition of these amounts of tin in (As4S3Se3)1-x:Snx does not lead to significant changes in the glass physical properties, such as values of stress and Young’s modulus related to the modification of the density and compactness. The study of the photoplastic effect is performed in situ, with illumination of the bulk and thin film samples during indentation as well as their indentation after illumination with a green laser (λ = 532 nm) at a power of P = 50 mV/cm2. The hardness is calculated from load-displacement curves by the Oliver-Pharr method. A sharp increase in hardness is registered if the tin concentration exceeds a value of 34% Sn. The hardness H of (As2Se3)1-x:Snx films varies between 115 and 130 kg/mm2. It is found that the hardness H of amorphous thin films is generally higher than the hardness of bulk samples with the same chemical composition. In this study, we are focused on the mechanical characteristics of high-purity As2Se3:Snx thin films.
format article
author Iaseniuc, Oxana
Harea, Diana
Harea, Evghenii
Volodina, Galina
Iovu, Mihail
author_facet Iaseniuc, Oxana
Harea, Diana
Harea, Evghenii
Volodina, Galina
Iovu, Mihail
author_sort Iaseniuc, Oxana
title The physical properties of (As2Se3)1-x:Snx and (As4S3Se3)1-x:Snx glasses
title_short The physical properties of (As2Se3)1-x:Snx and (As4S3Se3)1-x:Snx glasses
title_full The physical properties of (As2Se3)1-x:Snx and (As4S3Se3)1-x:Snx glasses
title_fullStr The physical properties of (As2Se3)1-x:Snx and (As4S3Se3)1-x:Snx glasses
title_full_unstemmed The physical properties of (As2Se3)1-x:Snx and (As4S3Se3)1-x:Snx glasses
title_sort physical properties of (as2se3)1-x:snx and (as4s3se3)1-x:snx glasses
publisher D.Ghitu Institute of Electronic Engineering and Nanotechnologies
publishDate 2013
url https://doaj.org/article/6bb990282eb54ae0aaa975580cdee43b
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