Oxides enter our everyday life and exhibit an impressive variety of physical and chemical properties. The understanding of their behaviour, which is often determined by the electronic and atomic structures of their surfaces and interfaces, is a key question in many fields, such as geology, environmental chemistry, catalysis, thermal coatings, microelectronics, and bioengineering. In the last decade, first principles methods, mainly those based on the density functional theory, have been frequently applied to study complex oxide surfaces and interfaces, complementing the experimental observations. In this work, we discuss some of these contributions, with emphasis on several issues that are especially important when dealing with oxides: the ...
In this thesis we develop and apply a variety of first-principles computational methods to the study...
The aqueous interfaces of metal oxides play an important role in geochemical processes, catalysis, a...
Complex oxides are a class of materials that have recently emerged as potential candidates for elect...
Complex oxide surface and interfaces with exotic properties provide immense opportunities in condens...
In this article we present three diverse applications of first-principles simulations to problems of...
Complex oxides are among the most abundant minerals on earth. While the mixture of metal elements an...
Both theoretically and experimentally, enormous progress has been made toward under-standing and con...
Surfaces of main group and transition metal oxides are covered by a layer of adsorbed water molecule...
One of the most important advances in modern theoretical surface science and catalysis research has ...
This thesis deals with two closely interwoven aspects of first-principle(density functional theory) ...
Abstract: The last decade has seen rapid expansion and development in the field of density functiona...
AbstractThe ability to apply existing density functional theory-based modeling techniques to timely ...
The formation of a native oxide layer on the Ti(0001) surface is studied by means of FPMD simulation...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018Cat...
Defects in thin oxide films on metal substrates affect metal work function and determine the chemica...
In this thesis we develop and apply a variety of first-principles computational methods to the study...
The aqueous interfaces of metal oxides play an important role in geochemical processes, catalysis, a...
Complex oxides are a class of materials that have recently emerged as potential candidates for elect...
Complex oxide surface and interfaces with exotic properties provide immense opportunities in condens...
In this article we present three diverse applications of first-principles simulations to problems of...
Complex oxides are among the most abundant minerals on earth. While the mixture of metal elements an...
Both theoretically and experimentally, enormous progress has been made toward under-standing and con...
Surfaces of main group and transition metal oxides are covered by a layer of adsorbed water molecule...
One of the most important advances in modern theoretical surface science and catalysis research has ...
This thesis deals with two closely interwoven aspects of first-principle(density functional theory) ...
Abstract: The last decade has seen rapid expansion and development in the field of density functiona...
AbstractThe ability to apply existing density functional theory-based modeling techniques to timely ...
The formation of a native oxide layer on the Ti(0001) surface is studied by means of FPMD simulation...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018Cat...
Defects in thin oxide films on metal substrates affect metal work function and determine the chemica...
In this thesis we develop and apply a variety of first-principles computational methods to the study...
The aqueous interfaces of metal oxides play an important role in geochemical processes, catalysis, a...
Complex oxides are a class of materials that have recently emerged as potential candidates for elect...