Essentially, the exposed crystal planes of a given material, which primarily determine their morphology, tremendously affect its behavior. First principle calculations, based on the Wulff construction model and broken bonding density index, have been performed to calculate the equilibrium and their transformations for different metal oxides: Co3O4, α-Fe2O3, and In2O3. Present results point out that starting by surface thermodynamics is a helpful approach to predict and assess the morphology transformations of these materials. These complete set of morphologies may serve as a guide for researchers, when analyzing the images from electron microscopies, to gain further understanding of how to control crystal shape synthetically by tuning the s...
Metal oxides exhibit many different phases, compositions, morphologies and surface structures. When ...
We report a series of new surface reconstructions on BaTiO3(001) as a function of environmental cond...
Most of the chemical and physical properties of nanomaterials vary remarkably according to their siz...
Essentially, the exposed crystal planes of a given material, which primarily determine their morphol...
Morphology is a key property of materials. Owing to their precise structure and morphology, crystals...
Crystal shape is a critical determinant of the physical and chemical properties of crystalline mater...
Morphology control of multifunctional semiconductor materials is a significant topic since it direc...
Design, control and direct characterization of the properties of the surfaces are prerequisites for ...
The atomic scale structure of crystalline surfaces plays an important role in the overall properties...
We present a combined theoretical and experimental study on the morphological, structural, and optic...
Using ab initio thermodynamics we compile a phase diagram for the surface of Fe3O4(001) as a functio...
In this communication, a systematic study of the surface structure, including energy management duri...
This thesis addresses two separate problems - an investigation of the interaction of probe molecules...
Surfaces and interfaces are of fundamental importance from the nucleation to growth of crystals form...
The renewed interest in magnetite (Fe3O4) as a major phase in different types of catalysts has led u...
Metal oxides exhibit many different phases, compositions, morphologies and surface structures. When ...
We report a series of new surface reconstructions on BaTiO3(001) as a function of environmental cond...
Most of the chemical and physical properties of nanomaterials vary remarkably according to their siz...
Essentially, the exposed crystal planes of a given material, which primarily determine their morphol...
Morphology is a key property of materials. Owing to their precise structure and morphology, crystals...
Crystal shape is a critical determinant of the physical and chemical properties of crystalline mater...
Morphology control of multifunctional semiconductor materials is a significant topic since it direc...
Design, control and direct characterization of the properties of the surfaces are prerequisites for ...
The atomic scale structure of crystalline surfaces plays an important role in the overall properties...
We present a combined theoretical and experimental study on the morphological, structural, and optic...
Using ab initio thermodynamics we compile a phase diagram for the surface of Fe3O4(001) as a functio...
In this communication, a systematic study of the surface structure, including energy management duri...
This thesis addresses two separate problems - an investigation of the interaction of probe molecules...
Surfaces and interfaces are of fundamental importance from the nucleation to growth of crystals form...
The renewed interest in magnetite (Fe3O4) as a major phase in different types of catalysts has led u...
Metal oxides exhibit many different phases, compositions, morphologies and surface structures. When ...
We report a series of new surface reconstructions on BaTiO3(001) as a function of environmental cond...
Most of the chemical and physical properties of nanomaterials vary remarkably according to their siz...