Computational materials discovery efforts utilize hundreds or thousands of density functional theory calculations to predict material properties. Historically, such efforts have performed calculations at the generalized gradient approximation (GGA) level of theory due to its efficient compromise between accuracy and computational reliability. However, high-throughput calculations at the higher metaGGA level of theory are becoming feasible. The strongly constrained and appropriately normed (SCAN) metaGGA functional offers superior accuracy to GGA across much of chemical space, making it appealing as a general-purpose metaGGA functional, but it suffers from numerical instabilities that impede its use in high-throughput workflows. The recently...
Using the large and chemically diverse GMTKN55 dataset, we have tested the performance of pure and h...
Accurate and careful benchmarking of different density-functional approximations (DFAs) represents a...
Computational modeling of the properties of crystalline materials has become an increasingly importa...
Computational materials discovery efforts utilize hundreds or thousands of density functional theory...
Computational materials discovery efforts are enabled by large databases of properties derived from ...
In the past decade we have witnessed the appearance of large databases of calculated material proper...
The ability of first-principles computational methods to reproduce ground-state crystal structure se...
The question of material stability is of fundamental importance to any analysis of system properties...
a b s t r a c t The use of high-throughput density functional theory (DFT) calculations to screen fo...
Many technologically important material properties directly relate to their electronic structure. Co...
The search for new materials based on computational screening relies on methods that accurately pred...
SCAN+rVV10 has been demonstrated to be a versatile van der Waals (vdW) density functional that deliv...
The exchange-correlation functional is at the core of density functional theory (DFT) and determines...
The recent development of the accurate and efficient semilocal density functionals on the third rung...
In materials science, the first principles modeling, especially density functional theory (DFT), ser...
Using the large and chemically diverse GMTKN55 dataset, we have tested the performance of pure and h...
Accurate and careful benchmarking of different density-functional approximations (DFAs) represents a...
Computational modeling of the properties of crystalline materials has become an increasingly importa...
Computational materials discovery efforts utilize hundreds or thousands of density functional theory...
Computational materials discovery efforts are enabled by large databases of properties derived from ...
In the past decade we have witnessed the appearance of large databases of calculated material proper...
The ability of first-principles computational methods to reproduce ground-state crystal structure se...
The question of material stability is of fundamental importance to any analysis of system properties...
a b s t r a c t The use of high-throughput density functional theory (DFT) calculations to screen fo...
Many technologically important material properties directly relate to their electronic structure. Co...
The search for new materials based on computational screening relies on methods that accurately pred...
SCAN+rVV10 has been demonstrated to be a versatile van der Waals (vdW) density functional that deliv...
The exchange-correlation functional is at the core of density functional theory (DFT) and determines...
The recent development of the accurate and efficient semilocal density functionals on the third rung...
In materials science, the first principles modeling, especially density functional theory (DFT), ser...
Using the large and chemically diverse GMTKN55 dataset, we have tested the performance of pure and h...
Accurate and careful benchmarking of different density-functional approximations (DFAs) represents a...
Computational modeling of the properties of crystalline materials has become an increasingly importa...