We calculate the critical temperature T-c of a wide range of diborides which have the same crystal structure as MgB2. Their electronic structure is also calculated in the framework of the local density approximation method of density functional theory by using the pseudopotential plane wave approach. The Hopfield factors eta of these materials are calculated by the frozen phonon method. Our results show that most of these diborides have low 77, and hence low or no T-c; this is consistent with experimental observations. The most important result of our calculation is that AgB2 and AuB2 have higher T-c than MgB2. The high T-c of these two materials comes from the combination of the high density of states and high deformation potential of the ...
A predictive tool for the design of new, higher temperature superconductors requires a simple, first...
We report a detailed first-principles local-density-functional investigation of the structural, elec...
The electronic structures of actual and hypothetical binary borides AB2 (A = Al, Mg, Li, Be, Ca) and...
Using density-functional-based methods, we have studied the fully-relaxed, full-potential electronic...
By means of density functional theory the electronic structure of the MgB2 superconductor was charac...
Results of ab initio electronic structure calculations on the compound, MgB2, using the FPLAPW metho...
A predictive tool for the design of new, higher temperature superconductors requires a simple, first...
A predictive tool for the design of new, higher temperature superconductors requires a simple, first...
We report a detailed study of the electronic and dynamical properties of MgB2, BeB2 and of the AlMgB...
We report a detailed study of the electronic and structural proper-ties of the 39 K superconductor M...
We report a detailed study of the electronic and structural proper-ties of the 39 K superconductor M...
The refractory forms of boron show performance parameters that are critical for future technological...
In the present study, we report an intercomparison of various physical and electronic properties of ...
none9siSolid MgB2 has rather interesting and technologically important properties, such as a very hi...
none10siThe discovery of superconductivity in MgB2, With a rather high transition temperature, has t...
A predictive tool for the design of new, higher temperature superconductors requires a simple, first...
We report a detailed first-principles local-density-functional investigation of the structural, elec...
The electronic structures of actual and hypothetical binary borides AB2 (A = Al, Mg, Li, Be, Ca) and...
Using density-functional-based methods, we have studied the fully-relaxed, full-potential electronic...
By means of density functional theory the electronic structure of the MgB2 superconductor was charac...
Results of ab initio electronic structure calculations on the compound, MgB2, using the FPLAPW metho...
A predictive tool for the design of new, higher temperature superconductors requires a simple, first...
A predictive tool for the design of new, higher temperature superconductors requires a simple, first...
We report a detailed study of the electronic and dynamical properties of MgB2, BeB2 and of the AlMgB...
We report a detailed study of the electronic and structural proper-ties of the 39 K superconductor M...
We report a detailed study of the electronic and structural proper-ties of the 39 K superconductor M...
The refractory forms of boron show performance parameters that are critical for future technological...
In the present study, we report an intercomparison of various physical and electronic properties of ...
none9siSolid MgB2 has rather interesting and technologically important properties, such as a very hi...
none10siThe discovery of superconductivity in MgB2, With a rather high transition temperature, has t...
A predictive tool for the design of new, higher temperature superconductors requires a simple, first...
We report a detailed first-principles local-density-functional investigation of the structural, elec...
The electronic structures of actual and hypothetical binary borides AB2 (A = Al, Mg, Li, Be, Ca) and...