Point defects have a strong impact on the performance of semiconductor and insulator materials used in technological applications, spanning microelectronics to energy conversion and storage. The nature of the dominant defect types, how they vary with processing conditions, and their impact on materials properties are central aspects that determine the performance of a material in a certain application. This information is, however, difficult to access directly from experimental measurements. Consequently, computational methods, based on electronic density functional theory (DFT), have found widespread use in the calculation of point-defect properties. Here we have developed the Python Charged Defect Toolkit (PyCDT) to expedite the setup and...
Calculations of point defect energetics with Density Functional Theory (DFT) can provide valuable in...
Abstract Recently, an advanced model for defects in the insulating regions of semiconductor devices ...
The stability of intrinsic point defects in PbTe, one of the most widely studied and efficient therm...
Point defects have a strong impact on the performance of semiconductor and insulator materials used ...
Understanding and predicting the thermodynamic properties of point defects in semiconductors and ins...
Atomic scale imperfections, know as point defects, dictate the performance and efficiency of many mo...
Charged point defects in materials are widely studied using Density Functional Theory (DFT) packages...
Inevitably, all crystalline materials will contain imperfections that have the ability to modify the...
Semiconductor science and technology is the art of defect engineering. The theoretical modeling of d...
Reliable calculations of defect properties may be obtained with density functional theory using the ...
In order to perform automated calculations of defect and dopant properties in semiconductors and ins...
Density-functional theory combined with periodic boundary conditions is used to systematically study...
This PhD thesis concerns the computational modeling of the electronic and atomic structure of point ...
Les défauts cristallographiques sont à l'origine de nombreuses propriétés d'intérêt pour les matéria...
Charged defects are often studied using density functional theory (DFT). However, the use of periodi...
Calculations of point defect energetics with Density Functional Theory (DFT) can provide valuable in...
Abstract Recently, an advanced model for defects in the insulating regions of semiconductor devices ...
The stability of intrinsic point defects in PbTe, one of the most widely studied and efficient therm...
Point defects have a strong impact on the performance of semiconductor and insulator materials used ...
Understanding and predicting the thermodynamic properties of point defects in semiconductors and ins...
Atomic scale imperfections, know as point defects, dictate the performance and efficiency of many mo...
Charged point defects in materials are widely studied using Density Functional Theory (DFT) packages...
Inevitably, all crystalline materials will contain imperfections that have the ability to modify the...
Semiconductor science and technology is the art of defect engineering. The theoretical modeling of d...
Reliable calculations of defect properties may be obtained with density functional theory using the ...
In order to perform automated calculations of defect and dopant properties in semiconductors and ins...
Density-functional theory combined with periodic boundary conditions is used to systematically study...
This PhD thesis concerns the computational modeling of the electronic and atomic structure of point ...
Les défauts cristallographiques sont à l'origine de nombreuses propriétés d'intérêt pour les matéria...
Charged defects are often studied using density functional theory (DFT). However, the use of periodi...
Calculations of point defect energetics with Density Functional Theory (DFT) can provide valuable in...
Abstract Recently, an advanced model for defects in the insulating regions of semiconductor devices ...
The stability of intrinsic point defects in PbTe, one of the most widely studied and efficient therm...