Reducible transition metal oxides (RTMOs) comprise an important class of catalytic materials that are used for the selective oxidation and electro- and photochemical splitting of water, and as supports for metal nanoparticles. It is, therefore, highly desirable to model the properties of these materials accurately using density functional theory (DFT) in order to understand how oxide structure and performance are related and to guide the search for materials exhibiting superior performance. Unfortunately, accurate description of the structural and electronic properties of RTMOs using DFT has proven particularly challenging. The M06-L density functional, which has been shown to be broadly accurate for calculations of gas phase clusters, has ...
We report the first detailed density functional theory study on the mechanisms of initial propane ac...
The electronic structure of layered molybdenum trioxide MoO3 is highly sensitive to changes in oxyge...
Mixed-metal oxides, e.g., V–Mo and Bi–Mo, are promising selective oxidation catalysts. Yet, their in...
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...
<p>The development of active and inexpensive catalysts is vital for progress in technologies related...
This work presents a study of the electronic structure of four transition metal oxides (TMOs) using ...
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 ...
In order to understand the remarkable activity of α-Bi2Mo3O12 for selective oxidation and ammoxidati...
The recent impetus towards preemption of runaway climate change through decarbonization of the globa...
In order to understand the remarkable activity of α-Bi2Mo3O12 for selective oxidation and ammoxidati...
The selective oxidation and ammoxidation of light olefins comprises a 5 million ton per year industr...
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 report the first detailed density functional theory study on the mechanisms of initial propane ac...
The electronic structure of layered molybdenum trioxide MoO3 is highly sensitive to changes in oxyge...
Mixed-metal oxides, e.g., V–Mo and Bi–Mo, are promising selective oxidation catalysts. Yet, their in...
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...
<p>The development of active and inexpensive catalysts is vital for progress in technologies related...
This work presents a study of the electronic structure of four transition metal oxides (TMOs) using ...
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 ...
In order to understand the remarkable activity of α-Bi2Mo3O12 for selective oxidation and ammoxidati...
The recent impetus towards preemption of runaway climate change through decarbonization of the globa...
In order to understand the remarkable activity of α-Bi2Mo3O12 for selective oxidation and ammoxidati...
The selective oxidation and ammoxidation of light olefins comprises a 5 million ton per year industr...
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 report the first detailed density functional theory study on the mechanisms of initial propane ac...
The electronic structure of layered molybdenum trioxide MoO3 is highly sensitive to changes in oxyge...
Mixed-metal oxides, e.g., V–Mo and Bi–Mo, are promising selective oxidation catalysts. Yet, their in...