Search Results - "STRBAC, G. R"
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Optical Properties and Structure of As–Sb Chalcohalide Glasses by Raman Scattering and Density Functional Theory Calculations
Published in The journal of physical chemistry. B (09-04-2020)“…We report an investigation of the optical properties, structure, and vibrational modes of Sb x As37–x S48I15 glasses (0 at. % < x < 37 at. %). Optical…”
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2
Investigation of thermal and electrical properties of As–Se glasses modified with Cu using DSC and AC impedance spectroscopy
Published in Applied physics. A, Materials science & processing (01-12-2018)“…Investigations of thermal properties of Cu x As 50 Se 50 − x chalcogenides were carried out using a differential scanning calorimeter. It was established that…”
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3
Dielectric and structural characteristics of the Bi-As2S3 quasibinar chalcogenides
Published in Journal of non-crystalline solids (01-02-2017)“…The results of measurements of the real and imaginary part of dielectric permittivity ε of Bi5(As2S3)95 and Bi7(As2S3)93 chalcogenides indicated their usual…”
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4
Effect of copper introduction into As2Se3 glass matrix on crystallization processes
Published in Journal of non-crystalline solids (01-10-2015)“…Crystallization processes in glasses of the Cux(As2Se3)100-x system for x=0, 1, 5, 10 and 15at.% were analyzed by non-isothermal differential scanning…”
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5
Study of glass transition process in quasi-binary As2S3–CdS chalcogenides
Published in Journal of non-crystalline solids (01-10-2013)“…The kinetics of the glass transition in the (As2S3)1−x(CdS)x (x=0, 2, 5) chalcogenide glass have been investigated using differential scanning calorimetry…”
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Journal Article Conference Proceeding -
6
Effect of arsenic atom substitute with antimony on crystallization processes and thermal stability of the (Sb, As)-S-I system
Published in Journal of non-crystalline solids (15-04-2012)“…Non-isothermal differential scanning calorimetry measurements of SbxAs37-xS48I15 chalcogenide glasses for x=0, 7, 12, 22, 32 and 37at.% at different heating…”
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7
Kinetic analysis of the crystallization processes in the glasses of the Bi–As–S system
Published in Journal of thermal analysis and calorimetry (01-10-2012)“…Kinetic analysis of the crystallization process in Bi 4 (As 2 S 3 ) 96 and Bi 6 (As 2 S 3 ) 94 glasses was performed based on DSC curves recorded under…”
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Journal Article Conference Proceeding -
8
Kinetics of non-isothermal crystallization of chalcogenide glasses from the Sb32As5S48I15 system
Published in Journal of non-crystalline solids (15-06-2007)Get full text
Conference Proceeding Journal Article -
9
Study of crystallization processes in Bi-doped As2S3 chalcogenide glasses using linear isoconversion and isokinetic methods
Published in Journal of crystal growth (01-01-2017)“…A kinetic analysis of the crystallization processes in Bi-doped chalcogenide glasses was performed using the differential scanning calorimetry method…”
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10
Study of the structural units in some chalcogenides of the As-Sb-S-Se-I system by X-ray and DSC analysis
Published in Journal of Optoelectronics and Advanced Materials (01-10-2007)“…The paper describes a study carried out with the aim of establishing the elements of structural network of the five-component non-crystalline samples. X-ray…”
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11
Environmentally friendly photoactive heterojunction zinc tin oxide nanoparticles
Published in Ceramics international (01-02-2016)“…Heterojunction zinc tin oxide (ZnO/SnO2) nanoparticles were prepared using a top–down traditional solid-state method; mechanical grinding followed by…”
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12
Influence of antimony on thermal stability of bulk chalcogenides from SbxAs37-xS48I15 system
Published in Journal of Optoelectronics and Advanced Materials (01-06-2007)“…The paper describes the results of determining the thermomechanical properties of chalcogenide glasses from SbxAs37-xS4.8I15 system for x=0, 12, 22, 32 and 37…”
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13
Structure and magnetic properties of Co3O4/SiO2 nanocomposite synthesized using combustion assisted sol-gel method
Published in Ceramics international (01-12-2016)“…This paper reports on novel cobalt oxide nanoparticles (NPs) embedded in an amorphous silica (SiO2) matrix, synthesized using a modified sol-gel method. SEM…”
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14
Kinetic Analysis of Thermal Processes in Ag-As-S-Se System Based on DSC Measurements
Published in Acta physica Polonica, A (01-04-2016)Get full text
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15
Effect of sulfur atom substitute with selenium on stability of glassy Ge20As14SxSe52-XI14 chalcohalides
Published in The Journal of physics and chemistry of solids (01-10-2005)Get full text
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16
Calculation of non-isothermal crystallization parameters for the Cu15(As2Se3)85 metal-chalcogenide glass
Published in Journal of non-crystalline solids (01-09-2010)Get full text
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17
Influence of substrate absorption on accuracy of determination of refractive index and thickness of uniform thin chalcogenide Cu1[As2(S0.5Se0.5)3]99 film
Published in Thin solid films (02-08-2010)“…The envelope method is a commonly used method for determination of some important optical constants, by using the envelopes of the transmittance T(I') and/or…”
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Conference Proceeding Journal Article -
18
Calculation of non-isothermal crystallization parameters for the Cu 15(As 2Se 3) 85 metal-chalcogenide glass
Published in Journal of non-crystalline solids (01-09-2010)“…This work analyzes the possibility of using an alternating series development in deriving the relations allowing the determination of the parameters of…”
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19
Influence of substrate absorption on accuracy of determination of refractive index and thickness of uniform thin chalcogenide Cu 1[As 2(S 0.5Se 0.5) 3] 99 film
Published in Thin solid films (02-08-2010)“…The envelope method is a commonly used method for determination of some important optical constants, by using the envelopes of the transmittance T( λ) and/or…”
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Journal Article -
20
Study of crystallization processes in Bi-doped As^sub 2^S^sub 3^ chalcogenide glasses using linear isoconversion and isokinetic methods
Published in Journal of crystal growth (01-01-2017)“…A kinetic analysis of the crystallization processes in Bi-doped chalcogenide glasses was performed using the differential scanning calorimetry method…”
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