We investigate the stability of hole polarons at the rutile surface induced by electronegative adsorbates in the intermediate steps of the oxygen evolution reaction through hybrid density functional calculations. Applying the computational hydrogen electrode method, we find that hole polarons reduce the overpotential of the reaction-determining step leading to good agreement with experiment. The stability of the polarons is confirmed at the hydrated surface through a free energy study involving the explicit solvent. The occurrence of surface hole polarons is unrelated to the scaling relationships and offers an additional handle in the search for improved catalysts
Water-oxide surfaces are ubiquitous in nature and of widespread importance to phenomena like corrosi...
Reactions on catalytically active surfaces often involve complex mechanisms with multiple interactio...
Polarons in metal oxides are important in processes such as catalysis, high temperature superconduct...
We investigate the stability of hole polarons at the rutile surface induced by electronegative adsor...
We investigate the stability of hole polarons at the rutile surface induced by electronegative adsor...
We investigate the stability of hole polarons at the rutile surface induced by electronegative adsor...
We investigate the stability of hole polarons at the rutile surface induced by electronegative adsor...
We investigate the stability of hole polarons at the rutile surface induced by electronegative adsor...
We investigate the stability of hole polarons at the rutile surface induced by electronegative adsor...
The polaronic effects at the atomic level hold paramount significance for advancing the efficacy of ...
Photoelectrochemical water splitting is a promising source of clean, renewable fuel in the form of h...
Charge trapping and the formation of polarons is a pervasive phenomenon in transition-metal oxide co...
Charge trapping and the formation of polarons is a pervasive phenomenon in transition-metal oxide co...
none5siCharge trapping and the formation of polarons is a pervasive phenomenon in transition-metal o...
Water-oxide surfaces are ubiquitous in nature and of widespread importance to phenomena like corrosi...
Water-oxide surfaces are ubiquitous in nature and of widespread importance to phenomena like corrosi...
Reactions on catalytically active surfaces often involve complex mechanisms with multiple interactio...
Polarons in metal oxides are important in processes such as catalysis, high temperature superconduct...
We investigate the stability of hole polarons at the rutile surface induced by electronegative adsor...
We investigate the stability of hole polarons at the rutile surface induced by electronegative adsor...
We investigate the stability of hole polarons at the rutile surface induced by electronegative adsor...
We investigate the stability of hole polarons at the rutile surface induced by electronegative adsor...
We investigate the stability of hole polarons at the rutile surface induced by electronegative adsor...
We investigate the stability of hole polarons at the rutile surface induced by electronegative adsor...
The polaronic effects at the atomic level hold paramount significance for advancing the efficacy of ...
Photoelectrochemical water splitting is a promising source of clean, renewable fuel in the form of h...
Charge trapping and the formation of polarons is a pervasive phenomenon in transition-metal oxide co...
Charge trapping and the formation of polarons is a pervasive phenomenon in transition-metal oxide co...
none5siCharge trapping and the formation of polarons is a pervasive phenomenon in transition-metal o...
Water-oxide surfaces are ubiquitous in nature and of widespread importance to phenomena like corrosi...
Water-oxide surfaces are ubiquitous in nature and of widespread importance to phenomena like corrosi...
Reactions on catalytically active surfaces often involve complex mechanisms with multiple interactio...
Polarons in metal oxides are important in processes such as catalysis, high temperature superconduct...