Understanding the oxidation mechanism of metal nanoparticles under ambient pressure is extremely important to make the best use of them in a variety of applications. Through ambient pressure transmission electron microscopy, we in situ investigated the dynamic oxidation processes of Ni nanoparticles at different temperatures under atmospheric pressure, and a temperature-dependent oxidation behavior was revealed. At a relatively low temperature (e.g., 600 °C), the oxidation of Ni nanoparticles underwent a classic Kirkendall process, accompanied by the formation of oxide shells. In contrast, at a higher temperature (e.g., 800 °C), the oxidation began with a single crystal nucleus at the metal surface and then proceeded along the metal/oxide i...
Thesis (Ph.D.)--University of Washington, 2020This dissertation includes the study of metal nanopart...
The results of a combined x-ray photoelectron spectroscopy (XPS) and high resolution transmission el...
This study investigated the redox exsolution of Ni nanoparticles from a nanoporous La0.52Sr0.28Ti0.9...
Understanding the oxidation mechanism of metal nanoparticles under ambient pressure is extremely imp...
The oxidation of nickel particles was studied in situ in an environmental transmission electron micr...
Nanoparticles of nickel and iron are prepared by inert gas condensation of plasma evaporated vapour....
The structural properties of nickel nanoparticles which are prepared by means of DC sputtering in a...
The production of intelligently designed catalysts requires an understanding of, not only the specif...
PhDThis thesis investigates both experimentally and numerically the oxidation, sintering, melting an...
We present in situ transmission electron microscopy (TEM) studies of nanoscale Ni–Au core–shell part...
Controlled input of oxygen into the inert working gas flow during the production of Ni nanoparticles...
We performed ReaxFF-molecular dynamics (MD) simulations of the oxidation of aluminum nanoparticles (...
Chemical reactions involving nanoparticles often follow complex processes. In this respect, real-tim...
The redox behaviors of nanoscale metal and ceramic materials are affected by various parameters and ...
Nanoparticle formation by dopant exsolution (migration) from bulk host lattices is a promising appro...
Thesis (Ph.D.)--University of Washington, 2020This dissertation includes the study of metal nanopart...
The results of a combined x-ray photoelectron spectroscopy (XPS) and high resolution transmission el...
This study investigated the redox exsolution of Ni nanoparticles from a nanoporous La0.52Sr0.28Ti0.9...
Understanding the oxidation mechanism of metal nanoparticles under ambient pressure is extremely imp...
The oxidation of nickel particles was studied in situ in an environmental transmission electron micr...
Nanoparticles of nickel and iron are prepared by inert gas condensation of plasma evaporated vapour....
The structural properties of nickel nanoparticles which are prepared by means of DC sputtering in a...
The production of intelligently designed catalysts requires an understanding of, not only the specif...
PhDThis thesis investigates both experimentally and numerically the oxidation, sintering, melting an...
We present in situ transmission electron microscopy (TEM) studies of nanoscale Ni–Au core–shell part...
Controlled input of oxygen into the inert working gas flow during the production of Ni nanoparticles...
We performed ReaxFF-molecular dynamics (MD) simulations of the oxidation of aluminum nanoparticles (...
Chemical reactions involving nanoparticles often follow complex processes. In this respect, real-tim...
The redox behaviors of nanoscale metal and ceramic materials are affected by various parameters and ...
Nanoparticle formation by dopant exsolution (migration) from bulk host lattices is a promising appro...
Thesis (Ph.D.)--University of Washington, 2020This dissertation includes the study of metal nanopart...
The results of a combined x-ray photoelectron spectroscopy (XPS) and high resolution transmission el...
This study investigated the redox exsolution of Ni nanoparticles from a nanoporous La0.52Sr0.28Ti0.9...