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materials science, multidisciplinary (6) 6
chalcogenide glasses (5) 5
materials science, ceramics (5) 5
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Journal of Non-Crystalline Solids, ISSN 0022-3093, 04/2019, Volume 509, pp. 74 - 79
The heat capacity of four samples of high-purity chalcogenide glasses GeS :nBi (х = 1.25, 1.35, 1.4, 1.6; n = 1 at. %) in the region of 300–750 K was measured... 
Bismuth | Germanium sulfide glasses | Thermodynamic properties
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 04/2019, Volume 509, pp. 74 - 79
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 01/2019, Volume 503-504, pp. 297 - 301
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 03/2020, Volume 531, p. 119857
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 03/2020, Volume 531
•The adhesive strength of GexSe100-x (15 ≤ х ≤ 26) glasses to silica glass was studied.•The GexSe100-x (x = 15–26) glasses are characterized by high adhesion... 
Ge–Se chalcogenide glasses | Preform | Glass formation | Adhesion strength
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 04/2019, Volume 509, pp. 74 - 79
The heat capacity of four samples of high-purity chalcogenide glasses GeSx:nBi (х = 1.25, 1.35, 1.4, 1.6; n = 1 at. %) in the region of 300–750 K was measured... 
Bismuth | Germanium sulfide glasses | Thermodynamic properties | TRANSITION | 3RD-ORDER | NONLINEAR-OPTICAL PROPERTIES | MATERIALS SCIENCE, MULTIDISCIPLINARY | BAND INFRARED LUMINESCENCE | CHALCOGENIDE GLASSES | MATERIALS SCIENCE, CERAMICS | HEAT-CAPACITY
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 01/2019, Volume 503-504, pp. 297 - 301
Glasses of Ge25-xGaxTe75-yIy system with gallium content of 5–15 at.% and iodine of 0–6 at.% have been prepared. The glass transition temperature,... 
MATERIALS SCIENCE, CERAMICS | MATERIALS SCIENCE, MULTIDISCIPLINARY
Journal Article
Optical Materials, ISSN 0925-3467, 10/2018, Volume 84, pp. 888 - 892
A new method based on the use of germanium monoselenide as a germanium-containing component of the batch for preparing especially pure Ge-Se glasses has been... 
Optical losses | Chalcogenide glass | Germanium monoselenide | Synthesis | Impurities | Single-index fiber | AS-S | MATERIALS SCIENCE, MULTIDISCIPLINARY | IMPURITY | CHALCOGENIDE GLASSES | SYSTEMS | OPTICS | ARSENIC-SULFIDE | Equipment and supplies | Fiber optics
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 02/2017, Volume 457, pp. 164 - 168
The samples of GeS1.35 glasses were synthesized with germanium and sulfur of natural isotopic composition and with isotopically enriched germanium (72Ge, 74Ge,... 
Raman scattering spectroscopy | Monoisotopic glasses | Chalcogenide glasses | Structure of glasses | MODES | MATERIALS SCIENCE, MULTIDISCIPLINARY | SPECTRA | MATERIALS SCIENCE, CERAMICS | Enrichment | Band spectra | Spectroscopy | Raman scattering | Mathematical analysis | Glass | Germanium | Spectra
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 12/2015, Volume 429, pp. 178 - 182
Ge–S–I glasses having iodine content of 4.0–22.1at.% and the x(S)/x(Ge) ratio of 1.7–2.1 were prepared by melting and subsequent cooling of the products of... 
Glass preparation | Chalcoiodide glasses | Impurity content | Infrared transmission | Thermal decomposition | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHALCOGENIDE GLASSES | MATERIALS SCIENCE, CERAMICS
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 10/2013, Volume 377, pp. 12 - 15
As2S3, GeS3, GeSe4 glasses have been prepared from monoisotopic (isotopically enriched) arsenic, germanium, sulfur and selenium. Impurity composition was... 
synthesis | chalcogenide glasses | IR spectra | transmission | isotopic elements | Isotopic elements | Synthesis | Chalcogenide glasses | Transmission | MATERIALS SCIENCE, MULTIDISCIPLINARY | MATERIALS SCIENCE, CERAMICS | SI-28 | VIBRATIONAL DYNAMICS | Sulfur compounds
Journal Article
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