학술논문

Molecular Dynamics Study of Alkanethiolate Self-Assembled Monolayer coated Gold Nanoparticle
Document Type
Conference
Source
2007 DoD High Performance Computing Modernization Program Users Group Conference DoD High Performance Computing Modernization Program Users Group Conference, 2007. :185-193 Jun, 2007
Subject
Computing and Processing
Aerospace
Self-assembly
Gold
Surface morphology
Nanoparticles
Corrugated surfaces
Temperature
Atomic measurements
Computational modeling
Quantum computing
Chemical analysis
Language
Abstract
Through molecular simulations we have observed that the surface of gold nanoparticles become highly corrugated by the adsorption of alkanethiolate self- assembled monolayers (SAMs). Furthermore, as the temperature is increased, the SAMs dissolve into the gold nanoparticle, creating a liquid mixture at temperatures much lower than the melting temperature of the gold nanoparticle. By analyzing the mechanical and chemical properties of gold nanoparticles at temperatures below the melting point of gold, with different SAM chain lengths and surface coverage properties, we have determined that the system is metastable. The model and computational results that provide support for this hypothesis are presented in this paper.