The electronic structure of modified CuGaS2, which belongs to the family of Cu-containing chalcopyrites, has been analyzed from first principles within the density functional theory. The chalcopyrite matrix has been modified by introducing a high concentration of atomic impurities that included transition metals and elements of group IVa at substitutional sites of the lattice host. For selected cases, an intermediate band has been found that potentially fulfills the requirements as stated for intermediate-band solar cell materials. Preliminary thermochemical estimations of the stability of the Compounds proposed against eventual secondary phases in the form of binary chalcogenides have greatly simplified the general screening. Elements of g...
Results of quantum calculations in M-doped chalcopyrite Cu4MGa3S8 (with M=Ti, V, Cr or Mn) are evalu...
In this work we present Density Functional Theory calculations (at the standard theory level and be...
In this work, we present frozen phonon and linear response ab-initio research into the vibrational p...
Electronic structure calculations are carried out for CuGaS2 partially substituted with Ti, V, Cr or...
Electronic structure calculations are carried out for CuGaS2 partially substituted with Ti, V, Cr or...
Density Functional Theory (DFT) calculations at the GGA level have been carried out for Ti-substitut...
Density Functional Theory (DFT) calculations at the GGA level have been carried out for Ti-substitut...
According to previous electronic structure calculations, substituting in CuGaS2 chalcopyrite some Ga...
According to previous electronic structure calculations, substituting in CuGaS2 chalcopyrite some Ga...
CuGaS2 is the most promising chalcopyrite host for intermediate-band thin-film solar cells. Standard...
CuGaS2 is the most promising chalcopyrite host for intermediate-band thin-film solar cells. Standard...
Cu-based chalcopyrite compounds have attracted much attention for photovoltaic application, while so...
Density Functional Theory (DFT) calculations at the GGA level have been carried out for Ti‐substitut...
Results of quantum calculations in M-doped chalcopyrite Cu4MGa3S8 (with M=Ti, V, Cr or Mn) are evalu...
International audienceAddition of an impurity or intermediate band in a semiconductor can extend its...
Results of quantum calculations in M-doped chalcopyrite Cu4MGa3S8 (with M=Ti, V, Cr or Mn) are evalu...
In this work we present Density Functional Theory calculations (at the standard theory level and be...
In this work, we present frozen phonon and linear response ab-initio research into the vibrational p...
Electronic structure calculations are carried out for CuGaS2 partially substituted with Ti, V, Cr or...
Electronic structure calculations are carried out for CuGaS2 partially substituted with Ti, V, Cr or...
Density Functional Theory (DFT) calculations at the GGA level have been carried out for Ti-substitut...
Density Functional Theory (DFT) calculations at the GGA level have been carried out for Ti-substitut...
According to previous electronic structure calculations, substituting in CuGaS2 chalcopyrite some Ga...
According to previous electronic structure calculations, substituting in CuGaS2 chalcopyrite some Ga...
CuGaS2 is the most promising chalcopyrite host for intermediate-band thin-film solar cells. Standard...
CuGaS2 is the most promising chalcopyrite host for intermediate-band thin-film solar cells. Standard...
Cu-based chalcopyrite compounds have attracted much attention for photovoltaic application, while so...
Density Functional Theory (DFT) calculations at the GGA level have been carried out for Ti‐substitut...
Results of quantum calculations in M-doped chalcopyrite Cu4MGa3S8 (with M=Ti, V, Cr or Mn) are evalu...
International audienceAddition of an impurity or intermediate band in a semiconductor can extend its...
Results of quantum calculations in M-doped chalcopyrite Cu4MGa3S8 (with M=Ti, V, Cr or Mn) are evalu...
In this work we present Density Functional Theory calculations (at the standard theory level and be...
In this work, we present frozen phonon and linear response ab-initio research into the vibrational p...