High-Pressure-Induced Phase Transitions Of Mercury Chalcogenides
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Pressure induced structural transition and elastic properties of ZnS-type (B3) to NaCl-type (B1) structure in mercury chalcogenides (HgX; X = S, Se and Te) are presented.
Thermopower of lead chalcogenides at high pressures
relativistic effects on the high-pressure phase transitions of HgO. Keywords Mercury oxide Montroydite X-ray diffraction Phase transitions Equations of state Introduction The high
Abstract: The widths of the hystereses curves, characterizing the pressure induced phase transitions of mercury chalcogenides, were substantiaily decreased by the addition of
Polymorphic transitions of HgSexTe(1 − x) induced by pressure were investigated for 0 <- x <- 1. The transitions were followed by both volume and resi
- Phase transition, electronic and optical properties of NaCl under pressure
- Pressure induced structural phase transitions—A review
- Thermopower of lead chalcogenides at high pressures
The nearest neighbor dependence of the pressure induced polymorphic phase transitions of mercury chalcogenides have been analyzed. An ionic and a metallic model were used to
The nearest neighbor dependence of the pressure induced polymorphic phase transitions of mercury chalcogenides have been analyzed. An ionic and a metallic model were used to
Pressure induced structural transition of ZB→RS and the elastic properties of ZB structure in Hg chalcogenides as a function pressure and temperature are reported in the
Pressure induced phase transitions of mercury chalcogenides
The pressure induced phase transition of α-HgS from cinnabar to NaCl structure (rock salt) was determined by Huang and Ruoff [5] at about 13 GPa by energy dispersive X-ray
We report the results of pressure-induced semiconductor-metal phase transition of the semiconducting chalcogenide compound KPSe 6 under high pressure using the ab initio
We have carried out a theoretical investigation of the structural, electronic and optical properties of mercury chalcogenides under pressure via first-principle calculations
The nearest neighbor dependence of the pressure induced polymorphic phase transitions of mercury chalcogenides have been analyzed. An ionic and a metallic model were
The low value of tetragonal shear constant Cs of the parent phase reflects the elastic instability leading to a pressure-induced phase transition. According to our isotropic
The high-pressure-induced phase transitions of mercury chalcogenides (including sulfide, selenide, and telluride) were studied to 40 GPa using energy-dispersive x-ray diffraction with a
In this paper investigations of electrical and mechanical properties of ternary mercury chalcogenides Hg 1-x Cd x Se, HgSe 1-x S x, HgTe 1-x S x were performed subjected to
Pressure induced structural transition and elastic properties of ZnS-type (B3) to NaCl-type (B1) structure in mercury chalcogenides (Hg X; X = S, Se and Te) are presented.

The nearest neighbor dependence of the pressure induced polymorphic phase transitions of mercury chalcogenides have been analyzed. An ionic and a metallic model were used to
High-pressure experimental techniques developed for studying the structural phase transitions and elastic properties are reviewed. The complete set of theoretical and
High-pressure-induced phase transitions of mercury chalcogenides. High-pressure-induced phase transitions of mercury chalcogenides . High-pressure-induced phase transitions
A procedure has been developed for the direct Observation of the pressure-induced polymorphic phase transitions. The resistance Variation, which is due to the different
The processes involved in the high-pressure phases of Sr–S compounds and the pressure-induced decomposition into strontium and sulfur are investigated using a structure
Ruoff,“High Pressure Induced Phase Transitions of Hg Chalcogenides,”Phys. Rev. B, 31, 5976–5983 (1985). (Crys Structure, Pressure; Experimental) (Crys Structure, Pressure;
In this paper investigations of electrical and mechanical properties of ternary mercury chalcogenides Hg 1-x Cd x Se, HgSe 1-x S x , HgTe 1-x S x were performed subjected to
We have carried out a theoretical investigation of the structural, electronic and optical properties of mercury chalcogenides under pressure via first-principle calculations within the density
High-pressure experimental techniques developed for studying the structural phase transitions and elastic properties are reviewed. The complete set of theoretical and
High-pressure-induced phase transitions of mercury chalcogenides (Q77965341) From Wikidata. Jump to navigation Jump to search. scientific article published on 01 May 1985. edit. Language
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