Previous work has demonstrated that for many materials, surface energies calculated by density functional theory (DFT) methods depend significantly on the exchange-correlation (xc) functional used. This could pose significant problems when using DFT for predicting structures of nanocrystals both in vacuum and on substrates. Here, we present initial results from a systematic study of , for a series of ionic materials using the VASP code and its projector augmented wave implementation of DFT. Calculations on LiH and MgO presented here were performed using four of the functionals available in VASP (LDA, PW91, PBE and RPBE) along with the recent Wu-Cohen modification of PBE. The results we present show that there is indeed a significant variati...
Materials design increasingly relies on first-principles calculations for screening important candid...
Density-functional theory (DFT) predictions of materials properties are becoming ever more widesprea...
Thesis: Ph. D. in Mechanical Engineering and Computation, Massachusetts Institute of Technology, Dep...
Previous work has demonstrated that for many materials, surface energies calculated by density funct...
Density functional theory (DFT) is widely used in surface science, but for some properties the predi...
Density functional theory (DFT) is the work–horse of modern materials modeling techniques, but scatt...
Quantum mechanical simulation of realistic models of nanostructured systems, such as nanocrystals an...
We show how accurate benchmark values of the surface formation energy of crystalline lithium hydride...
In the search for new functional materials, quantum mechanics is an exciting starting point. The fun...
Quantum Monte Carlo has been established as a powerful computational tool to study quantum many-body...
Using the diffusion quantum Monte Carlo method, we calculte the ground-state density and energy, and...
There are two primary ways that atomic level modeling data is used: materials prediction and underst...
Computational modeling has become a very effective approach in predicting properties of materials, a...
Density functional theory (DFT) is widely used to study defects in monolayer graphene with a view to...
Recently, Tao and Mo developed a semilocal exchange-correlation density functional. The exchange par...
Materials design increasingly relies on first-principles calculations for screening important candid...
Density-functional theory (DFT) predictions of materials properties are becoming ever more widesprea...
Thesis: Ph. D. in Mechanical Engineering and Computation, Massachusetts Institute of Technology, Dep...
Previous work has demonstrated that for many materials, surface energies calculated by density funct...
Density functional theory (DFT) is widely used in surface science, but for some properties the predi...
Density functional theory (DFT) is the work–horse of modern materials modeling techniques, but scatt...
Quantum mechanical simulation of realistic models of nanostructured systems, such as nanocrystals an...
We show how accurate benchmark values of the surface formation energy of crystalline lithium hydride...
In the search for new functional materials, quantum mechanics is an exciting starting point. The fun...
Quantum Monte Carlo has been established as a powerful computational tool to study quantum many-body...
Using the diffusion quantum Monte Carlo method, we calculte the ground-state density and energy, and...
There are two primary ways that atomic level modeling data is used: materials prediction and underst...
Computational modeling has become a very effective approach in predicting properties of materials, a...
Density functional theory (DFT) is widely used to study defects in monolayer graphene with a view to...
Recently, Tao and Mo developed a semilocal exchange-correlation density functional. The exchange par...
Materials design increasingly relies on first-principles calculations for screening important candid...
Density-functional theory (DFT) predictions of materials properties are becoming ever more widesprea...
Thesis: Ph. D. in Mechanical Engineering and Computation, Massachusetts Institute of Technology, Dep...