This thesis investigates both experimentally and numerically the oxidation, sintering, melting and solidification processes of different nanoparticles under various thermodynamic scenarios, with a background for energy applications. Two sets of main techniques are adopted in this work, which are isoconvensional kinetic analysis and molecular dynamics simulation. Based on the techniques of simultaneous Thermogravimetric Analysis (TGA) and Differential Scanning Calorimetry (DSC), for first time the isoconvensional kinetic analysis is applied to study the oxidation of nickel and tin nanoparticles. This method is demonstrated capable of modelling one-step nanoscale oxidation and revealing underling kinetic mechanisms. Moreover, some distinct fe...
UnrestrictedThis dissertation uses multi-million atom molecular dynamics simulations to determine th...
The Ni-Al nanolayer is exothermic material self-propagated and reacted by thermal or mechanical stim...
Understanding the oxidation mechanism of metal nanoparticles under ambient pressure is extremely imp...
PhDThis thesis investigates both experimentally and numerically the oxidation, sintering, melting an...
Reactive metallic particles involve many complicated physical and chemical processes. Using molecula...
Using molecular dynamics simulation in combination with an embedded atom method potential we analyze...
Using molecular dynamics simulation in combination with the embedded atom method we analyze the allo...
Metal nanoparticles have many desirable electrical, magnetic, optical, chemi-cal, and physical prope...
Nano-silver pastes have been widely used in electronic packaging because of its outstanding characte...
The molecular-dynamics analysis is presented for 3D compaction simulation of nano-crystalline metals...
Title from PDF of title page (University of Missouri--Columbia, viewed on June 21, 2010).The entire ...
Thermochemical behavior of nickel-coated aluminum particles in the size range of 4–18 nm is studied ...
The kinetic reaction in a Ni-coated Al nanoparticle with equi-atomic fractions and diameter of appro...
The report presents the basic models describing the melting temperature of nanomaterials based on di...
The oxidation of aluminum nanoparticles is studied with classical molecular dynamics and the Streitz...
UnrestrictedThis dissertation uses multi-million atom molecular dynamics simulations to determine th...
The Ni-Al nanolayer is exothermic material self-propagated and reacted by thermal or mechanical stim...
Understanding the oxidation mechanism of metal nanoparticles under ambient pressure is extremely imp...
PhDThis thesis investigates both experimentally and numerically the oxidation, sintering, melting an...
Reactive metallic particles involve many complicated physical and chemical processes. Using molecula...
Using molecular dynamics simulation in combination with an embedded atom method potential we analyze...
Using molecular dynamics simulation in combination with the embedded atom method we analyze the allo...
Metal nanoparticles have many desirable electrical, magnetic, optical, chemi-cal, and physical prope...
Nano-silver pastes have been widely used in electronic packaging because of its outstanding characte...
The molecular-dynamics analysis is presented for 3D compaction simulation of nano-crystalline metals...
Title from PDF of title page (University of Missouri--Columbia, viewed on June 21, 2010).The entire ...
Thermochemical behavior of nickel-coated aluminum particles in the size range of 4–18 nm is studied ...
The kinetic reaction in a Ni-coated Al nanoparticle with equi-atomic fractions and diameter of appro...
The report presents the basic models describing the melting temperature of nanomaterials based on di...
The oxidation of aluminum nanoparticles is studied with classical molecular dynamics and the Streitz...
UnrestrictedThis dissertation uses multi-million atom molecular dynamics simulations to determine th...
The Ni-Al nanolayer is exothermic material self-propagated and reacted by thermal or mechanical stim...
Understanding the oxidation mechanism of metal nanoparticles under ambient pressure is extremely imp...