We perform lattice Monte Carlo simulations to study the self-assembly of functionalized inorganic nanoscale building blocks using recognitive biomolecule linkers. We develop a minimal coarse-grained lattice model for the nanoscale building block (NBB) and the recognitive linkers. Using this model, we explore the influence of the size ratio of linker length to NBB diameter on the assembly process and the structural properties of the resulting aggregates, including the spatial distribution of NBBs and aggregate topology. We find the constant-kernel Smoluchowski theory of diffusion-limited cluster–cluster aggregation describes the aggregation kinetics for certain size ratios. © 2004 American Institute of Physics.Peer Reviewedhttp://deepblue.li...
Assembly of nanoscale objects into linear architectures resembling molecular polymers is a basic org...
Nanoparticles have attracted much attention because of their unusual physical properties, which allo...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
Precise assembly of nanoparticles is crucial for creating spatially engineered materials that can be...
In this thesis, we develop a novel approach for modelling self-assembling systems that use the singl...
We report canonical and grand-canonical lattice Monte Carlo simulations of the self-assembly of addr...
We perform molecular simulations to study the self-assembly of block copolymer tethered cubic nanopa...
Self-organization of nanoparticles is an efficient strategy for producing nanostructures with comple...
A coarse-grained lattice model of DNA oligonucleotides is proposed to investigate how fundamental th...
The directed-assembly and self-assembly of building blocks are promising techniques to make structur...
Nanoscale colloids and nanoparticles (NPs), have recently emerged as a new class of materials that p...
We consider nanoparticles and functionalized copolymers, block copolymers with attached end groups p...
Multilevel self-assembly involving small structured groups of nano-particles provides new routes to ...
Coarse-grained molecular dynamics simulations of diamond nanoparticles were performed to investigate...
Immense insight into fundamental processes necessity for the fabrication of nanostructures is gather...
Assembly of nanoscale objects into linear architectures resembling molecular polymers is a basic org...
Nanoparticles have attracted much attention because of their unusual physical properties, which allo...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
Precise assembly of nanoparticles is crucial for creating spatially engineered materials that can be...
In this thesis, we develop a novel approach for modelling self-assembling systems that use the singl...
We report canonical and grand-canonical lattice Monte Carlo simulations of the self-assembly of addr...
We perform molecular simulations to study the self-assembly of block copolymer tethered cubic nanopa...
Self-organization of nanoparticles is an efficient strategy for producing nanostructures with comple...
A coarse-grained lattice model of DNA oligonucleotides is proposed to investigate how fundamental th...
The directed-assembly and self-assembly of building blocks are promising techniques to make structur...
Nanoscale colloids and nanoparticles (NPs), have recently emerged as a new class of materials that p...
We consider nanoparticles and functionalized copolymers, block copolymers with attached end groups p...
Multilevel self-assembly involving small structured groups of nano-particles provides new routes to ...
Coarse-grained molecular dynamics simulations of diamond nanoparticles were performed to investigate...
Immense insight into fundamental processes necessity for the fabrication of nanostructures is gather...
Assembly of nanoscale objects into linear architectures resembling molecular polymers is a basic org...
Nanoparticles have attracted much attention because of their unusual physical properties, which allo...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...