The nickel and gold nanoclusters as supported catalysts were analyzed by XAS, XRD and XPS in order to determine their local, global and electronic structure. The present study has pointed out a strong deformation of the local structure of the metal, due to its interaction with oxide supports. The average particle size, the mean squares of the microstrain, the particle size distribution and microstrain functions of the supported Ni and Au catalysts were determined by XRD method using Generalized Fermi Function for the X-ray line profiles approximation. Based on EXAFS analysis we consider that the local structure of the investigated systems is strongly distorted concerning the atomic number pairs. Metal-support interaction is confirmed by the...
The distinguishing feature of our collaborative program of study is the focus it brings to emergent ...
Periodic density functional theory calculations on large supercells have been carried out to investi...
Controlling the size and uniformity of metal clusters with atomic precision is essential for fine‐tu...
The supported Pd catalysts were analyzed by X-ray diffraction and X-ray absorption spectroscopy in o...
In this paper we report the result of a recent experiment of high resolution XANES (HERFD-XANES) whi...
An Au/CeO2 model catalyst was prepared by deposition–precipitation, with the aim of obtaining a samp...
An Au/CeO<sub>2</sub> model catalyst was prepared by deposition–precipitation, with the aim of obtai...
224 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.This dissertation describes t...
This work reveals and quantifies the inherent intracluster heterogeneity in the atomic structure and...
Novel nanogold catalytic systems made up of gold nanoparticles (similar to 2-6 nm) supported on niob...
The application of a modified version of the X-ray Rietveld analysis on Pd-Au/C catalysts, prepared ...
The surface atomic structure of metallic nanoparticles (NPs) plays a key role in shaping their physi...
Controlling the size and uniformity of metal clusters with atomic precision is essential for fine-tu...
Catalytic and energetic nanomaterials are analyzed chemically and structurally in atomistic detail. ...
X-ray absorption spectra characterizing the metal-support interface in supported metal complexes and...
The distinguishing feature of our collaborative program of study is the focus it brings to emergent ...
Periodic density functional theory calculations on large supercells have been carried out to investi...
Controlling the size and uniformity of metal clusters with atomic precision is essential for fine‐tu...
The supported Pd catalysts were analyzed by X-ray diffraction and X-ray absorption spectroscopy in o...
In this paper we report the result of a recent experiment of high resolution XANES (HERFD-XANES) whi...
An Au/CeO2 model catalyst was prepared by deposition–precipitation, with the aim of obtaining a samp...
An Au/CeO<sub>2</sub> model catalyst was prepared by deposition–precipitation, with the aim of obtai...
224 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.This dissertation describes t...
This work reveals and quantifies the inherent intracluster heterogeneity in the atomic structure and...
Novel nanogold catalytic systems made up of gold nanoparticles (similar to 2-6 nm) supported on niob...
The application of a modified version of the X-ray Rietveld analysis on Pd-Au/C catalysts, prepared ...
The surface atomic structure of metallic nanoparticles (NPs) plays a key role in shaping their physi...
Controlling the size and uniformity of metal clusters with atomic precision is essential for fine-tu...
Catalytic and energetic nanomaterials are analyzed chemically and structurally in atomistic detail. ...
X-ray absorption spectra characterizing the metal-support interface in supported metal complexes and...
The distinguishing feature of our collaborative program of study is the focus it brings to emergent ...
Periodic density functional theory calculations on large supercells have been carried out to investi...
Controlling the size and uniformity of metal clusters with atomic precision is essential for fine‐tu...