The structural and electronic properties of the interface are critical for the morphology of supported metal nanoparticles and thus the performance in catalysis, photonics, biomedical research, and other areas. To reveal the intrinsic mechanism of the formation of various morphologies, a multiscale simulation strategy is adopted to bridge the macroscopic structures by experimental observations and microscopic properties by theoretical calculations. This strategy incorporates the density functional theory (DFT) for the interaction energy calculation, the molecular dynamics (MD) simulation for the structure evolution, and theoretical model for the correlation with contact angles. The interaction energies between Pt atoms (four-atom clusters) ...
Abstract Using classical molecular dynamics, atomic scale simulations of normal contact between a no...
Ce travail de thèse est focalisé sur l'interaction de molécules organométalliques avec des métaux de...
Crucial thrusts in modern technology from electronic information processing to engineering cellular ...
Interfacial phenomena and the associated kinetic, thermodynamic and structural properties are releva...
Molecular dynamics simulations employing the ReaxFF reactive force field have been carried out to an...
Molecular dynamics simulations employing the ReaxFF reactive force field have been carried out to an...
Metal-support interactions can dramatically affect the properties of nanocomposite materials. Nevert...
Ligand coated nanoparticles are complex objects consisting of a metallic or semiconductor core with ...
In the present dissertation, a hierarchical multiscale approach for modeling FePt nanoparticles by a...
Physical responses of nanoparticle (NP)-polymer interphase/interface to external stimulus is a topic...
In order to illustrate how atomistic modeling is being used to determine the structure, physical, an...
Gold nanoparticles (AuNPs) are an integral part of many exciting and novel biomedical applications, ...
Understanding the size- and shape-dependent properties of platinum nanoparticles is critical for ena...
Gaining an insight into the interface structure resulting from the interaction between metal nanopar...
Gold nanoparticles have the capability to be functionalized with a variety of chemical groups in ord...
Abstract Using classical molecular dynamics, atomic scale simulations of normal contact between a no...
Ce travail de thèse est focalisé sur l'interaction de molécules organométalliques avec des métaux de...
Crucial thrusts in modern technology from electronic information processing to engineering cellular ...
Interfacial phenomena and the associated kinetic, thermodynamic and structural properties are releva...
Molecular dynamics simulations employing the ReaxFF reactive force field have been carried out to an...
Molecular dynamics simulations employing the ReaxFF reactive force field have been carried out to an...
Metal-support interactions can dramatically affect the properties of nanocomposite materials. Nevert...
Ligand coated nanoparticles are complex objects consisting of a metallic or semiconductor core with ...
In the present dissertation, a hierarchical multiscale approach for modeling FePt nanoparticles by a...
Physical responses of nanoparticle (NP)-polymer interphase/interface to external stimulus is a topic...
In order to illustrate how atomistic modeling is being used to determine the structure, physical, an...
Gold nanoparticles (AuNPs) are an integral part of many exciting and novel biomedical applications, ...
Understanding the size- and shape-dependent properties of platinum nanoparticles is critical for ena...
Gaining an insight into the interface structure resulting from the interaction between metal nanopar...
Gold nanoparticles have the capability to be functionalized with a variety of chemical groups in ord...
Abstract Using classical molecular dynamics, atomic scale simulations of normal contact between a no...
Ce travail de thèse est focalisé sur l'interaction de molécules organométalliques avec des métaux de...
Crucial thrusts in modern technology from electronic information processing to engineering cellular ...