Transition metal oxides exhibit strong structure-property correlations, which has been extensively investigated and utilized for achieving efficient oxygen electrocatalysts. However, high-performance oxide-based electrocatalysts for hydrogen evolution are quite limited, and the mechanism still remains elusive. Here we demonstrate the strong correlations between the electronic structure and hydrogen electrocatalytic activity within a single oxide system Ti2O3. Taking advantage of the epitaxial stabilization, the polymorphism of Ti2O3 is extended by stabilizing bulk-absent polymorphs in the film-form. Electronic reconstructions are realized in the bulk-absent Ti2O3 polymorphs, which are further correlated to their electrocatalytic activity. W...
In this opinion piece, we highlight and discuss beyond state-of-the-art transition metal oxide mater...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Oxygen vacancies (V o) in electrocatalysts are closely correlated with the hydrogen evolution reacti...
Transition metal oxides exhibit strong structure-property correlations, which has been extensively i...
© 2018 American Chemical Society. Pursuing efficient and low-cost electrocatalysts is crucial for th...
Pursuing efficient and low-cost electrocatalysts is crucial for the performance of water–alkali elec...
Electrolysis of water to produce hydrogen and oxygen is a promising pathway for the storage of renew...
The discovery of novel materials for catalytic purposes that are highly stable is one of the main ch...
We report that the valence and conduction band energies of TiO2 can be tuned over a 4 eV range by va...
In addition to composition, the structure of a catalyst is another fundamental determinant of its ca...
2D metal (hydr)oxide nanosheets have captured increasing interest in electrocatalytic applications a...
We report that the valence and conduction band energies of TiO2 can be tuned over a 4 eV range by va...
One of the largest cost and efficiency limitations of electrochemical energy storage and conversion ...
The topmost atomic layers of electrocatalysts determine the mechanism and kinetics of reactions in m...
Efficient and low-cost transition-metal (TM)-based electrocatalysts have been of great importance fo...
In this opinion piece, we highlight and discuss beyond state-of-the-art transition metal oxide mater...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Oxygen vacancies (V o) in electrocatalysts are closely correlated with the hydrogen evolution reacti...
Transition metal oxides exhibit strong structure-property correlations, which has been extensively i...
© 2018 American Chemical Society. Pursuing efficient and low-cost electrocatalysts is crucial for th...
Pursuing efficient and low-cost electrocatalysts is crucial for the performance of water–alkali elec...
Electrolysis of water to produce hydrogen and oxygen is a promising pathway for the storage of renew...
The discovery of novel materials for catalytic purposes that are highly stable is one of the main ch...
We report that the valence and conduction band energies of TiO2 can be tuned over a 4 eV range by va...
In addition to composition, the structure of a catalyst is another fundamental determinant of its ca...
2D metal (hydr)oxide nanosheets have captured increasing interest in electrocatalytic applications a...
We report that the valence and conduction band energies of TiO2 can be tuned over a 4 eV range by va...
One of the largest cost and efficiency limitations of electrochemical energy storage and conversion ...
The topmost atomic layers of electrocatalysts determine the mechanism and kinetics of reactions in m...
Efficient and low-cost transition-metal (TM)-based electrocatalysts have been of great importance fo...
In this opinion piece, we highlight and discuss beyond state-of-the-art transition metal oxide mater...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Oxygen vacancies (V o) in electrocatalysts are closely correlated with the hydrogen evolution reacti...