The atomic disorder and the vibrational properties of Pd nanocubes have been studied through a combined use of X-ray diffraction and molecular dynamics simulations. The latter show that the trend of the mean square relative displacement as a function of the radius of the coordination shells is characteristic of the nanoparticle shape and can be described by a combined model: A correlated Debye model for the thermal displacement and a parametric expression for the static disorder. This combined model, supplemented by results of line profile analysis of the diffraction patterns collected at different temperatures (100, 200, and 300 K) can explain the observed increase in the Debye–Waller coefficient, and shed light on the effect of the finite...
This review examines the physical reasons why nanoparticles differ in structure from the bulk. Certa...
We propose an explanation for the enhanced low- and high-energy tails of the vibrational density of ...
Accurate statistical characterization of nanomaterials is crucial for their use in emerging technolo...
The atomic disorder and the vibrational properties of Pd nanocubes have been studied through a combi...
Nearly identical Pd nanocubes yield an x-ray powder diffraction pattern with interference fringes af...
The reduced length scales inherent in nanoscale materials enable access to properties that are other...
In the search for new mechanisms to improve and control the mechanical properties of nanostructures,...
We report results of a systematic study of structural, vibrational and thermodynamical properties of...
221 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2008.The third application of the ...
Lattice vibrations in a nanocrystalline solid, in contrast to bulk crystalline solid, will have an a...
Polycrystalline metallic materials commonly exhibit the Hall-Petch relationship, which states that d...
Supported Pt nanocatalysts generally exhibit anomalous behavior, including negative thermal expansio...
We have gained insight into the internal degree of atomic disorder in isolated size-selected Fe nano...
We propose an explanation for the enhanced low- and high-energy tails of the vibrational density of ...
We present first-principles calculations of the vibrational density of states (VDOS), the specific h...
This review examines the physical reasons why nanoparticles differ in structure from the bulk. Certa...
We propose an explanation for the enhanced low- and high-energy tails of the vibrational density of ...
Accurate statistical characterization of nanomaterials is crucial for their use in emerging technolo...
The atomic disorder and the vibrational properties of Pd nanocubes have been studied through a combi...
Nearly identical Pd nanocubes yield an x-ray powder diffraction pattern with interference fringes af...
The reduced length scales inherent in nanoscale materials enable access to properties that are other...
In the search for new mechanisms to improve and control the mechanical properties of nanostructures,...
We report results of a systematic study of structural, vibrational and thermodynamical properties of...
221 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2008.The third application of the ...
Lattice vibrations in a nanocrystalline solid, in contrast to bulk crystalline solid, will have an a...
Polycrystalline metallic materials commonly exhibit the Hall-Petch relationship, which states that d...
Supported Pt nanocatalysts generally exhibit anomalous behavior, including negative thermal expansio...
We have gained insight into the internal degree of atomic disorder in isolated size-selected Fe nano...
We propose an explanation for the enhanced low- and high-energy tails of the vibrational density of ...
We present first-principles calculations of the vibrational density of states (VDOS), the specific h...
This review examines the physical reasons why nanoparticles differ in structure from the bulk. Certa...
We propose an explanation for the enhanced low- and high-energy tails of the vibrational density of ...
Accurate statistical characterization of nanomaterials is crucial for their use in emerging technolo...