The high-pressure structural phase transition in AuAl2 is studied using first-principles density functional theory. Our theoretical results predict a structural phase transition at ~18.7 GPa and the high-pressure phase is identified to be a primitive orthorhombic structure. In addition, our electronic structure calculations rationalize the observed variation of electrical resistance with pressure
Three intermetallic compounds, AuX2 (X = Al, Ga, In), were synthesized by arc-melting proper stoichi...
We report a structural phase transition in AuIn2 above 25 GPa. The inferred structure of this phase ...
The structural, electronic, and dynamic properties of hypothetical gold(II) oxide (AuO) are studied...
The high-pressure structural phase transition in AuAl2 is studied using first-principles density fun...
Diamond anvil cell (DAC) based resistance measurements are carried out in AuAl2 to the pressures of ...
We study from first-principles calculations the behavior of the trigonal phase of AuTe2 under pressu...
Results of electronic band structure calculations, electrical resistance, thermoelectric power (TEP)...
High-resolution angular-dispersive x-ray diffraction shows that the intermetallic compound AuIn2 ret...
We present accurate x-ray diffraction data at high pressures for AuIn2, AuGa2 and AuAl2, obtained us...
Using density functional theory, we perform ab initio calculations of the behaviour of calaverite, A...
High-resolution angular-dispersive x-ray diffraction shows that the intermetallic compound AuIn₂ ret...
Electrical resistivity, thermoelectric power, and high-pressure x-ray-diffraction measurements are c...
WOS: 000267798600157An ab initio constant pressure technique is applied to study the pressure-induce...
We report a structural phase transition in AuIn2 above 25 GPa. The inferred structure of this phase ...
An investigation into the high-pressure behavior of AX(2)-type iron pnictides was conducted using fi...
Three intermetallic compounds, AuX2 (X = Al, Ga, In), were synthesized by arc-melting proper stoichi...
We report a structural phase transition in AuIn2 above 25 GPa. The inferred structure of this phase ...
The structural, electronic, and dynamic properties of hypothetical gold(II) oxide (AuO) are studied...
The high-pressure structural phase transition in AuAl2 is studied using first-principles density fun...
Diamond anvil cell (DAC) based resistance measurements are carried out in AuAl2 to the pressures of ...
We study from first-principles calculations the behavior of the trigonal phase of AuTe2 under pressu...
Results of electronic band structure calculations, electrical resistance, thermoelectric power (TEP)...
High-resolution angular-dispersive x-ray diffraction shows that the intermetallic compound AuIn2 ret...
We present accurate x-ray diffraction data at high pressures for AuIn2, AuGa2 and AuAl2, obtained us...
Using density functional theory, we perform ab initio calculations of the behaviour of calaverite, A...
High-resolution angular-dispersive x-ray diffraction shows that the intermetallic compound AuIn₂ ret...
Electrical resistivity, thermoelectric power, and high-pressure x-ray-diffraction measurements are c...
WOS: 000267798600157An ab initio constant pressure technique is applied to study the pressure-induce...
We report a structural phase transition in AuIn2 above 25 GPa. The inferred structure of this phase ...
An investigation into the high-pressure behavior of AX(2)-type iron pnictides was conducted using fi...
Three intermetallic compounds, AuX2 (X = Al, Ga, In), were synthesized by arc-melting proper stoichi...
We report a structural phase transition in AuIn2 above 25 GPa. The inferred structure of this phase ...
The structural, electronic, and dynamic properties of hypothetical gold(II) oxide (AuO) are studied...