AbstractAmorphous zirconium tungstate (a-ZrW2O8), prepared at 7.7GPa, was subjected to successive heat treatments at increasingly higher temperatures, up to 640°C. Evidence of recrystallization into α-ZrW2O8 was found in the room temperature X-ray powder diffraction pattern of samples previously heated above 600°C. Changes in elastic moduli and linear thermal expansion coefficient upon annealing of a-ZrW2O8 up to 600°C cannot be accounted for by assuming a composite sample consisting of α-ZrW2O8 domains dispersed into an amorphous zirconium tungstate matrix. The irreversible relaxation of a-ZrW2O8 and recrystallization into α-ZrW2O8 is accompanied by an increase of bulk modulus (from 61.8(8)GPa to 74.4(9)GPa) and Poisson's ratio (from 0.267...
In contrast to widely accepted view that pressure-induced amorphization arises due to kinetic hindra...
High-pressure high-temperature syntheses using the gamma- ZrMo2O8 (Pa (3) over bar, Z = 4) starting...
Although zirconium tungstate (ZrW2O8) is the most popular negative thermal expansion (NTE) material,...
AbstractAmorphous zirconium tungstate (a-ZrW2O8), prepared at 7.7GPa, was subjected to successive he...
4 p. : il.Zirconium tungstate (a-ZrW2O8) exhibits isotropic negative thermal expansion over a wide r...
We report high-pressure synchrotron X-ray powder diffraction data for the W-rich cubic ZrW[2-x]Mo[x]...
In contrast to widely accepted view that pressure-induced amorphization arises due to kinetic hindra...
The structure of [upsilon]-ZrW2O8 has been optimized at zero pressure and also at V/V0=0.97 by means...
The structure of [upsilon]-ZrW2O8 has been optimized at zero pressure and also at V/V0=0.97 by means...
O tungstato de zircônio, ZrW2O8, ocupa um lugar de destaque entre os compostos cujas propriedades fí...
A single-phase ZrW[2]O[8] was prepared using the hydrothermal synthesis by decomposition of ZrW[2]O7...
4 p. : il.It has been shown that zirconium tungstate (ZrW2O8) exhibits isotropic negative thermal ex...
The morphology and properties of powders ZrW2O7(OH)[2]•2H[2]O and ZrW[2]O[8], obtained under the con...
Synthesis and Characterization of Some Low and Negative Thermal Expansion Materials Tamas Varga 37...
Synthesis and Characterization of Some Low and Negative Thermal Expansion Materials Tamas Varga 37...
In contrast to widely accepted view that pressure-induced amorphization arises due to kinetic hindra...
High-pressure high-temperature syntheses using the gamma- ZrMo2O8 (Pa (3) over bar, Z = 4) starting...
Although zirconium tungstate (ZrW2O8) is the most popular negative thermal expansion (NTE) material,...
AbstractAmorphous zirconium tungstate (a-ZrW2O8), prepared at 7.7GPa, was subjected to successive he...
4 p. : il.Zirconium tungstate (a-ZrW2O8) exhibits isotropic negative thermal expansion over a wide r...
We report high-pressure synchrotron X-ray powder diffraction data for the W-rich cubic ZrW[2-x]Mo[x]...
In contrast to widely accepted view that pressure-induced amorphization arises due to kinetic hindra...
The structure of [upsilon]-ZrW2O8 has been optimized at zero pressure and also at V/V0=0.97 by means...
The structure of [upsilon]-ZrW2O8 has been optimized at zero pressure and also at V/V0=0.97 by means...
O tungstato de zircônio, ZrW2O8, ocupa um lugar de destaque entre os compostos cujas propriedades fí...
A single-phase ZrW[2]O[8] was prepared using the hydrothermal synthesis by decomposition of ZrW[2]O7...
4 p. : il.It has been shown that zirconium tungstate (ZrW2O8) exhibits isotropic negative thermal ex...
The morphology and properties of powders ZrW2O7(OH)[2]•2H[2]O and ZrW[2]O[8], obtained under the con...
Synthesis and Characterization of Some Low and Negative Thermal Expansion Materials Tamas Varga 37...
Synthesis and Characterization of Some Low and Negative Thermal Expansion Materials Tamas Varga 37...
In contrast to widely accepted view that pressure-induced amorphization arises due to kinetic hindra...
High-pressure high-temperature syntheses using the gamma- ZrMo2O8 (Pa (3) over bar, Z = 4) starting...
Although zirconium tungstate (ZrW2O8) is the most popular negative thermal expansion (NTE) material,...