We use a recently developed plasma-flow reactor to experimentally investigate the formation of oxide nanoparticles from gas phase metal atoms during oxidation, homogeneous nucleation, condensation, and agglomeration processes. Gas phase uranium, aluminum, and iron atoms were cooled from 5000 K to 1000 K over short-time scales (σt < 30 ms) at atmospheric pressures in the presence of excess oxygen. In-situ emission spectroscopy is used to measure the variation in monoxide/atomic emission intensity ratios as a function of temperature and oxygen fugacity. Condensed oxide nanoparticles are collected inside the reactor for ex-situ analyses using scanning and transmission electron microscopy (SEM, TEM) to determine their structural compositions...
This study employed the reactive force field molecular dynamics to capture atomic-level heat and mas...
Although the general environment of the proposed repository at Yucca Mountain is expected to be oxid...
The gaseous oxidation of uranium and its alloys is a complex process. Material transport across the ...
We use a recently developed plasma-flow reactor to experimentally investigate the formation of oxide...
We use a recently developed plasma-flow reactor to experimentally investigate the formation of oxide...
We use a recently developed plasma-flow reactor to experimentally investigate the formation of oxide...
We use a recently developed plasma-flow reactor to experimentally investigate the formation of oxide...
In the present work, the formation of iron oxide nanopatzicles from iron-pentacarbonyl in the gaspha...
In this master’s thesis I will address the design of two aluminum and one nickel-iron oxide core-she...
The synthesis of iron nanoparticles in a radio-frequency induction thermal plasma (RF-ITP) system w...
The oxidation mechanisms of core-shell aluminum nanoparticles (ANPs) in high-temperature steam and o...
The addition of ultra-fine and nano-sized particles in composite materials influences their proper I...
This study employed the reactive force field molecular dynamics to capture atomic-level heat and mas...
We have deposited aluminium oxide films by atomic layer deposition on titanium oxide nanoparticles i...
UnrestrictedThis dissertation uses multi-million atom molecular dynamics simulations to determine th...
This study employed the reactive force field molecular dynamics to capture atomic-level heat and mas...
Although the general environment of the proposed repository at Yucca Mountain is expected to be oxid...
The gaseous oxidation of uranium and its alloys is a complex process. Material transport across the ...
We use a recently developed plasma-flow reactor to experimentally investigate the formation of oxide...
We use a recently developed plasma-flow reactor to experimentally investigate the formation of oxide...
We use a recently developed plasma-flow reactor to experimentally investigate the formation of oxide...
We use a recently developed plasma-flow reactor to experimentally investigate the formation of oxide...
In the present work, the formation of iron oxide nanopatzicles from iron-pentacarbonyl in the gaspha...
In this master’s thesis I will address the design of two aluminum and one nickel-iron oxide core-she...
The synthesis of iron nanoparticles in a radio-frequency induction thermal plasma (RF-ITP) system w...
The oxidation mechanisms of core-shell aluminum nanoparticles (ANPs) in high-temperature steam and o...
The addition of ultra-fine and nano-sized particles in composite materials influences their proper I...
This study employed the reactive force field molecular dynamics to capture atomic-level heat and mas...
We have deposited aluminium oxide films by atomic layer deposition on titanium oxide nanoparticles i...
UnrestrictedThis dissertation uses multi-million atom molecular dynamics simulations to determine th...
This study employed the reactive force field molecular dynamics to capture atomic-level heat and mas...
Although the general environment of the proposed repository at Yucca Mountain is expected to be oxid...
The gaseous oxidation of uranium and its alloys is a complex process. Material transport across the ...