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Influence of Sb do** on thermal properties and electrical conductivity mechanism of SbxSe50–xSn20Te30 chalcogenide glassy systems
Tunability of thermal, and electrical characteristics of Sb x Se 50-x Sn 20 Te 30 (x= 2, 4, 6,
and 8 at.%) bulk glass systems with varying do** concentrations are the major objective of …
and 8 at.%) bulk glass systems with varying do** concentrations are the major objective of …
Impact on nonlinear/linear optical and structural parameters in quaternary In15Ag10S15Se60 thin films upon annealing at different temperatures
In the present study, the effect of thermal annealing on structural, linear, and nonlinear
optical properties of quaternary chalcogenide In 15 Ag 10 S 15 Se 60 thin film has been …
optical properties of quaternary chalcogenide In 15 Ag 10 S 15 Se 60 thin film has been …
Conduction mechanism and the dielectric relaxation process of a-Se75Te25− xGax (x= 0, 5, 10 and 15 at wt%) chalcogenide glasses
Se75Te25− xGax (x= 0, 5, 10 and 15atwt%) chalcogenide compositions were prepared by
the well known melt quenching technique. Thin films with different thicknesses in the range …
the well known melt quenching technique. Thin films with different thicknesses in the range …
Compositional dependence of structural, physical, and, in particular, optical parameters of Se50–xTe30Sn20Sbx chalcogenide glassy systems
YB Singh, P Chatterjee, RKN Ningthemcha… - Materials Chemistry and …, 2021 - Elsevier
Through this paper, we describe the compositional dependency on physical, structural and
optical properties of Se 50–x Te 30 Sn 20 Sb x (x= 2, 4, 6, and 8) chalcogenide bulk glassy …
optical properties of Se 50–x Te 30 Sn 20 Sb x (x= 2, 4, 6, and 8) chalcogenide bulk glassy …
Influence of thickness and annealing on optical constants of Se82. 5Te15Sb2. 5 chalcogenide thin films
Chalcogenide thin films of Se 82.5 Te 15 Sb 2.5 with different thickness (50–300 nm) are
prepared by thermal evaporation technique. Crystalline phases of the deposited films are …
prepared by thermal evaporation technique. Crystalline phases of the deposited films are …
Glass transition, thermal stability and glass-forming tendency of Se90− xTe5Sn5Inx multi-component chalcogenide glasses
Glass transition kinetics of glassy Se90− xTe5Sn5Inx (x= 0, 3, 6 and 9) alloys have been
investigated using differential scanning calorimetric (DSC) technique under non-isothermal …
investigated using differential scanning calorimetric (DSC) technique under non-isothermal …
Crystallization study of Sn additive Se–Te chalcogenide alloys
Calorimetric study of Se 85− x Te 15 Sn x (x= 0, 2, 4 and 6) glassy alloys have been
performed using Differential Scanning Calorimetry (DSC) under non-isothermal conditions …
performed using Differential Scanning Calorimetry (DSC) under non-isothermal conditions …
[HTML][HTML] Physical characterization and crystallization kinetics of amorphous BiSe chalcogenide glasses
The influence of Bi concentration on the thermal parameters viz temperatures of glass
transition (T gl) and crystallization (T pc) of binary Bi x Se 100-x glasses were studied …
transition (T gl) and crystallization (T pc) of binary Bi x Se 100-x glasses were studied …
Effect of Bi incorporation on the glass transition kinetics of Se 85 Te 15 glassy alloy
A Sharma, P Barman - Journal of thermal analysis and calorimetry, 2009 - akjournals.com
Bulk samples of Se 85-x Te 15 Bi x glassy alloys are obtained by melt quenching technique.
Differential scanning calorimetry has been applied to determine the thermal properties of Se …
Differential scanning calorimetry has been applied to determine the thermal properties of Se …
Investigation of some thermo-mechanical and dielectric properties in multi-component chalcogenide glasses of Se–Te–Sn–Ag quaternary system
A Srivastava, N Mehta - Journal of Alloys and Compounds, 2016 - Elsevier
The present work is based on the studies of some thermo-mechanical and dielectric
properties in novel glassy Se 78− x Te 20 Sn 2 Ag x (x= 0, 2, 4, 6) system. For this, we have …
properties in novel glassy Se 78− x Te 20 Sn 2 Ag x (x= 0, 2, 4, 6) system. For this, we have …