The shape of nanoparticles can be important in defining their properties. Establishing the exact shape of particles is a challenging task when the particles tend to agglomerate and their size is just a few nanometers. Here we report a structure refinement procedure for establishing the shape of nanoparticles using powder diffraction data. The method utilizes the fundamental formula of Debye coupled with a Monte Carlo-based optimization and has been successfully applied to TiO2-B nanoparticles. Atomistic modeling and molecular dynamics simulations of ensembles of all the ions in the nanoparticle reveal surface hydroxylation as the underlying reason for the established shape and structural features.</p
Structural properties of amorphous TiO2 spherical nanoparticles have been studied in models with di...
Crystallite size distributions and particle size distributions were determined by TEM, XRD, and SAXS...
<p>Transmission Electron Microscopy images to characterize the crystal shape of the TiO<sub>2</sub> ...
The shape of nanoparticles can be important in defining their properties. Establishing the exact sha...
ABSTRACT: The shape of nanoparticles can be important in defining their properties. Establishing the...
The shape of nanoparticles can be important in defining their properties. Establishing the exact sha...
Characterization of functional nanocrystalline materials in terms of quantitative determination of s...
The ability to synthesize nanoparticles (NPs), here TiO2, of different shapes in a controlled and re...
Accurate statistical characterization of nanomaterials is crucial for their use in emerging technolo...
There are two methods to estimate the particle size from X-ray diffraction data: the Debye equation ...
The morphology of a nanomaterial (geometric shape and dimension) has a significant impact on its phy...
Accurate statistical characterization of nanomaterials is crucial for their use in emerging technolo...
This thesis investigates the morphology and polymorphism of TiO$_2$ nanoparticles prepared in premix...
In the present work a series of design rules are developed in order to tune the morphology of TiO2 n...
Bottom-up and top-down derived nanoparticle structures refined by accurate ab initio calculations ar...
Structural properties of amorphous TiO2 spherical nanoparticles have been studied in models with di...
Crystallite size distributions and particle size distributions were determined by TEM, XRD, and SAXS...
<p>Transmission Electron Microscopy images to characterize the crystal shape of the TiO<sub>2</sub> ...
The shape of nanoparticles can be important in defining their properties. Establishing the exact sha...
ABSTRACT: The shape of nanoparticles can be important in defining their properties. Establishing the...
The shape of nanoparticles can be important in defining their properties. Establishing the exact sha...
Characterization of functional nanocrystalline materials in terms of quantitative determination of s...
The ability to synthesize nanoparticles (NPs), here TiO2, of different shapes in a controlled and re...
Accurate statistical characterization of nanomaterials is crucial for their use in emerging technolo...
There are two methods to estimate the particle size from X-ray diffraction data: the Debye equation ...
The morphology of a nanomaterial (geometric shape and dimension) has a significant impact on its phy...
Accurate statistical characterization of nanomaterials is crucial for their use in emerging technolo...
This thesis investigates the morphology and polymorphism of TiO$_2$ nanoparticles prepared in premix...
In the present work a series of design rules are developed in order to tune the morphology of TiO2 n...
Bottom-up and top-down derived nanoparticle structures refined by accurate ab initio calculations ar...
Structural properties of amorphous TiO2 spherical nanoparticles have been studied in models with di...
Crystallite size distributions and particle size distributions were determined by TEM, XRD, and SAXS...
<p>Transmission Electron Microscopy images to characterize the crystal shape of the TiO<sub>2</sub> ...