<p>The development of active and inexpensive catalysts is vital for progress in technologies related to efficient energy generation, storage, and utilization. Transition metal oxides (TMOs) make up a significant fraction of current state-of-the-art catalysts for these technologies. Density functional theory (DFT), the workhorse for computational chemistry and catalysis, can calculate the activity of catalysts, provide synthesis targets, and accelerate the discovery of active and cheap TMO catalysts. This dissertation develops DFT methods for accurately calculating and understanding the catalytic activity of TMOs. Known electron self-interaction errors in TMO bulk oxidation energies implies reactions energies on TMO surfaces should contain s...
This work presents a study of the electronic structure of four transition metal oxides (TMOs) using ...
We performed a series of density functional theory calculations of dissociative oxygen adsorption on...
Transition metal catalysis, being critical to nearly all aspects of the modern industrial world, is ...
Reducible transition metal oxides (RTMOs) comprise an important class of catalytic materials that ar...
Reducible transition metal oxides (RTMOs) comprise an important class of catalytic materials that ar...
One of the most important advances in modern theoretical surface science and catalysis research has ...
One of the most important advances in modern theoretical surface science and catalysis research has ...
Reducible transition metal oxides (RTMOs) comprise an important class of catalytic materials that ar...
This work presents a study of the electronic structure of four transition metal oxides (TMOs) using ...
In this dissertation, I present four projects on the fundamental study of the surface configurations...
The recent impetus towards preemption of runaway climate change through decarbonization of the globa...
By combining experimental and theoretical approaches, we investigate the quantitative relationship b...
The application of density functional theory to calculate adsorption properties, reac-tion pathways,...
Understanding the scaling relations of adsorption energies and activation energies greatly facilitat...
This work presents a study of the electronic structure of four transition metal oxides (TMOs) using ...
This work presents a study of the electronic structure of four transition metal oxides (TMOs) using ...
We performed a series of density functional theory calculations of dissociative oxygen adsorption on...
Transition metal catalysis, being critical to nearly all aspects of the modern industrial world, is ...
Reducible transition metal oxides (RTMOs) comprise an important class of catalytic materials that ar...
Reducible transition metal oxides (RTMOs) comprise an important class of catalytic materials that ar...
One of the most important advances in modern theoretical surface science and catalysis research has ...
One of the most important advances in modern theoretical surface science and catalysis research has ...
Reducible transition metal oxides (RTMOs) comprise an important class of catalytic materials that ar...
This work presents a study of the electronic structure of four transition metal oxides (TMOs) using ...
In this dissertation, I present four projects on the fundamental study of the surface configurations...
The recent impetus towards preemption of runaway climate change through decarbonization of the globa...
By combining experimental and theoretical approaches, we investigate the quantitative relationship b...
The application of density functional theory to calculate adsorption properties, reac-tion pathways,...
Understanding the scaling relations of adsorption energies and activation energies greatly facilitat...
This work presents a study of the electronic structure of four transition metal oxides (TMOs) using ...
This work presents a study of the electronic structure of four transition metal oxides (TMOs) using ...
We performed a series of density functional theory calculations of dissociative oxygen adsorption on...
Transition metal catalysis, being critical to nearly all aspects of the modern industrial world, is ...