Approximate, semilocal density functional theory (DFT) suffers from delocalization error that can lead to a paradoxical model of catalytic surfaces that both overbind adsorbates yet are also too stable. We investigate the effect of two widely applied approaches for delocalization error correction, (i) affordable DFT+U (i.e., semilocal DFT augmented with a Hubbard U) and (ii) hybrid functionals with an admixture of Hartree-Fock (HF) exchange, on surface and adsorbate energies across a range of rutile transition metal oxides widely studied for their promise as water-splitting catalysts. We observe strongly row- A nd period-dependent trends with DFT+U, which increases surface formation energies only in early transition metals (e.g., Ti and V) ...
We compare the accuracy of conventional semilocal density functional theory (DFT), the DFT+U method,...
The expense of quantum chemistry calculations significantly hinders endeavors to search through dive...
Understanding the structure and chemical reactivity of water adsorbed at metallic surfaces is very i...
Bond making and breaking are important to heterogenous catalysis. The strength and coordination of t...
One of the most important advances in modern theoretical surface science and catalysis research has ...
International audienceDensity Functional Theory (DFT) calculations show on two examples how catalyti...
We address the nature of the bond between water molecules and metal surfaces through a systematic de...
During the last decades, computer simulations have become an important tool for the study of element...
The rational design of heterogeneous catalysts relies on the efficient survey of mechanisms by densi...
Approximate density functional theory (DFT) is widely used in chemistry and physics, despite delocal...
<p>First-principles simulation has played an ever-increasing role in the discovery and interpretatio...
Understanding the adsorption phenomena of small adsorbates involved in surface reactions on transiti...
In this thesis, a wide breadth of topics related to the field of surface science are addressed using...
Since its inception, the widespread use of density functional theory (DFT) as a cost-effective tool ...
By combining experimental and theoretical approaches, we investigate the quantitative relationship b...
We compare the accuracy of conventional semilocal density functional theory (DFT), the DFT+U method,...
The expense of quantum chemistry calculations significantly hinders endeavors to search through dive...
Understanding the structure and chemical reactivity of water adsorbed at metallic surfaces is very i...
Bond making and breaking are important to heterogenous catalysis. The strength and coordination of t...
One of the most important advances in modern theoretical surface science and catalysis research has ...
International audienceDensity Functional Theory (DFT) calculations show on two examples how catalyti...
We address the nature of the bond between water molecules and metal surfaces through a systematic de...
During the last decades, computer simulations have become an important tool for the study of element...
The rational design of heterogeneous catalysts relies on the efficient survey of mechanisms by densi...
Approximate density functional theory (DFT) is widely used in chemistry and physics, despite delocal...
<p>First-principles simulation has played an ever-increasing role in the discovery and interpretatio...
Understanding the adsorption phenomena of small adsorbates involved in surface reactions on transiti...
In this thesis, a wide breadth of topics related to the field of surface science are addressed using...
Since its inception, the widespread use of density functional theory (DFT) as a cost-effective tool ...
By combining experimental and theoretical approaches, we investigate the quantitative relationship b...
We compare the accuracy of conventional semilocal density functional theory (DFT), the DFT+U method,...
The expense of quantum chemistry calculations significantly hinders endeavors to search through dive...
Understanding the structure and chemical reactivity of water adsorbed at metallic surfaces is very i...