This work investigates the structural, electronic, mechanical, and optical properties of nanolaminated M2PbC (M = Ti, Zr and Hf) compounds using the first-principles method based on the density functional theory. Geometrical optimization of the unit cell is in good agreement with the available experimental data. These three compounds are mechanically stable estimated by the individual elastic constants. The calculated shear-modulus of Zr2PbC is 67 GPa, which is the minimum value among all MAX phases so far and is attributed to the weak Zr–Pb bond. The band structure shows that all three materials are electrically conductive. The electronic structure discloses that the density of state at the Fermi level (Ef) mainly originates from M d state...
Tetragonal Mo5PB2, a recently discovered superconductor, is an extension of transition metal binarie...
WOS: 000306106000036The structural, elastic, electronic, and optical properties of orthorhombic ZrPt...
The elastic properties and electronic properties of MxNy (M = Ti, Zr) TiN, Ti2N, Zr3N4, ZrN with dif...
We investigated structure optimization, mechanical stability, electronic and bonding properties of t...
The structural, elastic, and electronic properties of new nanolaminates (V0.25Zr0.75)2PbC, (V0.5Zr0....
We have studied the physical properties of M2InC (M = Zr, Hf and Ta) MAX phases ternary carbides usi...
First principles study of electronic and mechanical properties of ternary phase Zr2TiAl intermetalli...
First principles study of electronic and mechanical properties of ternary phase Zr2TiAl intermetalli...
We have investigated theoretical Vickers hardness, thermodynamic and optical properties of four zirc...
First principles study of electronic and mechanical properties of ternary phase Zr2TiAlZr2TiAl inter...
First principles study of electronic and mechanical properties of ternary phase Zr2TiAlZr2TiAl inter...
We have investigated the electronic structure, chemical bonding, and equations of state of Zr2Al3C5 ...
The structural, elastic, electronic, and optical properties of orthorhombic ZrPtSi and TiPtSi ternar...
By means of first principles calculations, Zr-Al-C nanolaminates have been studied in the aspects of...
The structural, elastic, electronic, and optical properties of orthorhombic ZrPtSi and TiPtSi ternar...
Tetragonal Mo5PB2, a recently discovered superconductor, is an extension of transition metal binarie...
WOS: 000306106000036The structural, elastic, electronic, and optical properties of orthorhombic ZrPt...
The elastic properties and electronic properties of MxNy (M = Ti, Zr) TiN, Ti2N, Zr3N4, ZrN with dif...
We investigated structure optimization, mechanical stability, electronic and bonding properties of t...
The structural, elastic, and electronic properties of new nanolaminates (V0.25Zr0.75)2PbC, (V0.5Zr0....
We have studied the physical properties of M2InC (M = Zr, Hf and Ta) MAX phases ternary carbides usi...
First principles study of electronic and mechanical properties of ternary phase Zr2TiAl intermetalli...
First principles study of electronic and mechanical properties of ternary phase Zr2TiAl intermetalli...
We have investigated theoretical Vickers hardness, thermodynamic and optical properties of four zirc...
First principles study of electronic and mechanical properties of ternary phase Zr2TiAlZr2TiAl inter...
First principles study of electronic and mechanical properties of ternary phase Zr2TiAlZr2TiAl inter...
We have investigated the electronic structure, chemical bonding, and equations of state of Zr2Al3C5 ...
The structural, elastic, electronic, and optical properties of orthorhombic ZrPtSi and TiPtSi ternar...
By means of first principles calculations, Zr-Al-C nanolaminates have been studied in the aspects of...
The structural, elastic, electronic, and optical properties of orthorhombic ZrPtSi and TiPtSi ternar...
Tetragonal Mo5PB2, a recently discovered superconductor, is an extension of transition metal binarie...
WOS: 000306106000036The structural, elastic, electronic, and optical properties of orthorhombic ZrPt...
The elastic properties and electronic properties of MxNy (M = Ti, Zr) TiN, Ti2N, Zr3N4, ZrN with dif...