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Related papers: High Pressure phase transitions in BaWO4

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X-ray diffraction and Raman scattering studies on scheelite structured barium molybdate show that, at 5.8 GPa, it undergoes a first order phase transition to fergusonite structure (I2/a, Z=4), asobserved in iso-structural barium…

Materials Science · Physics 2009-11-11 Vinod Panchal , Nandini Garg , Surinder M. Sharma

We report the results of both angle-dispersive x-ray diffraction and x-ray absorption near-edge structure studies in BaWO4 and PbWO4 at pressures of up to 56 GPa and 24 GPa, respectively. BaWO4 is found to undergo a pressure-driven phase…

Angle-dispersive x-ray diffraction (ADXRD) and x-ray absorption near edge structure (XANES) measurements have been performed in the AWO4 tungstates CaWO4 and SrWO4 under high pressure up to approximately 20 GPa. Similar phase transitions…

Room-temperature Raman scattering has been measured in barium tungstate (BaWO4) up to 16 GPa. We report the pressure dependence of all the Raman-active first-order phonons of the tetragonal scheelite phase (BaWO4-I, space group I41/a),…

We report a high-pressure study of tetragonal scheelite-type CaMoO4 up to 29 GPa. In order to characterize its high-pressure behavior, we have combined Raman and optical-absorption measurements with density-functional theory calculations.…

Materials Science · Physics 2017-09-29 V. Panchal , N. Garg , H. K. Poswal , D. Errandonea , P. Rodriguez-Hernandez , A. Munoz , E. Cavalli

We report here the combined results of angle-dispersive x-ray diffraction experiments performed on ThGeO4 up to 40 GPa and total-energy density-functional theory calculations. Zircon-type ThGeO4 is found to undergo a pressure-driven phase…

Materials Science · Physics 2010-07-02 D. Errandonea , Ravhi. S. Kumar , L. Gracia , A. Beltran , S. N. Achary , A. K. Tyagi

SrMoO4 was studied under compression up to 25 GPa by angle-dispersive x-ray diffraction. A phase transition was observed from the scheelite-structured ambient phase to a monoclinic fergusonite phase at 12.2(9) GPa with cell parameters a =…

Materials Science · Physics 2008-02-04 Daniel Errandonea , Ravhi S. Kumar , Xinghua Ma , Chaoyang Tu

The high-pressure structural behavior of europium orthovanadate has been studied using in-situ, synchrotron based, high-pressure x-ray powder diffraction technique. Angle-dispersive x-ray diffraction measurements were carried out at room…

Materials Science · Physics 2015-03-12 Alka B. Garg , D. Errandonea

The behavior of LuLiF4 sheelite (I41/a, Z = 4) under hydrostatic pressure was investigated by means of the first principles calculations. The ferroelastic phase transition from the tetragonal structure of LuLiF4 to fergusonite structure…

Materials Science · Physics 2014-06-02 Anastasia Petrova , Oleg Nedopekin , Dmitrii Tayurskii , Benoit Minisini

Room temperature angle-dispersive x-ray diffraction measurements on zircon-type EuVO4, LuVO4, and ScVO4 were performed up to 27 GPa. In the three compounds we found evidence of a pressure-induced structural phase transformation from zircon…

Materials Science · Physics 2010-05-04 D. Errandonea , R. Lacomba-Perales , J. Ruiz-Fuertes , A. Segura , S. N. Achary , A. K. Tyagi

This paper reports an investigation on the phase diagram and compressibility of wolframite-type tungstates by means of x-ray powder diffraction and absorption in a diamond-anvil cell and ab initio calculations. The diffraction experiments…

The pressure-driven tetragonal-to-monoclinic phase transition in CaWO4 and related scheelite-structured orthotungstates is analysed in terms of spontaneous strains. Based upon our previous high-pressure x-ray diffraction results and the…

Materials Science · Physics 2007-05-23 D. Errandonea

Room-temperature Raman scattering has been measured in lead tungstate up to 17 GPa. We report the pressure dependence of all the Raman modes of the tetragonal scheelite phase (PbWO4-I, space group I41/a), which is stable at ambient…

The compression behavior of zircon-type samarium orthovanadate, SmVO4, has been investigated using synchrotron-based powder x-ray diffraction and ab-initio calculations up to 21 GPa. The results indicate the instability of ambient zircon…

Materials Science · Physics 2016-01-22 C Popescu , Alka B Garg , D Errandonea , J A Sans , P Rodriguez-Hernandez , S Radescu , A Munoz , S N Achary , A K Tyagi

In this paper we perform a high-pressure study of fergusonite-type HoNbO4. Powder x-ray diffraction experiments and ab initio density-functional theory simulations provide evidence of a phase transition at 18.9(1.1) GPa from the monoclinic…

Materials Science · Physics 2025-08-08 A. B. Garg , D. Errandonea , P. Rodriguez-Hernandez , A. Munoz

Lattice dynamics and high pressure phase transitions in AWO4 (A = Ba, Sr, Ca and Pb) have been investigated using inelastic neutron scattering experiments, ab-initio density functional theory calculations and extensive molecular dynamics…

Materials Science · Physics 2015-06-22 Prabhatasree Goel , M. K. Gupta , R. Mittal , S. Rols , S. N. Achary , A. K. Tyagi , S. L. Chaplot

The pressure response of the scheelite phase of CaWO4 (YLiF4) and the occurrence of the pressure induced scheelite-to-wolframite (M-fergusonite) transition are reviewed and discussed. It is shown that the change of the axial parameters…

Materials Science · Physics 2009-11-10 D. Errandonea , F. J. Manjon , M. Somayazulu , D. Hausermann

Combined X-ray absorption spectroscopy (XAS) and X-ray diffraction (XRD) experiments have been carried out on GaAsO4 (berlinite structure) at high pressure and room temperature. XAS measurements indicate four-fold to six-fold coordination…

Materials Science · Physics 2009-10-30 James Badro , Philippe Gillet , Paul F. McMillan , Alain Polian , Jean-Paul Itié

We present an investigation into the crystal structure of ErVO4 under variable pressure conditions. The high-pressure single crystal X-ray diffraction experiments performed employing helium as the pressure medium facilitated structure…

The optical-absorption edge of single crystals of CaWO4, SrWO4, BaWO4, and PbWO4 has been measured under high pressure up to ~20 GPa at room temperature. From the measurements we have obtained the evolution of the band-gap energy with…

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