A newly developed coarse-grained model called BioModi is utilized to elucidate the effects of temperature and concentration on DNA hybridization in self-assembly. Large-scale simulations demonstrate that complementary strands of either the tetrablock sequence or randomized sequence with equivalent number of cytosine or guanine nucleotides can form completely hybridized double helices. Even though the end states are the same for the two sequences, there exist multiple kinetic pathways that are populated with a wider range of transient aggregates of different sizes in the system of random sequences compared to that of the tetrablock sequence. The ability of these aggregates to undergo the strand displacement mechanism to form only double heli...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
<p>The control of matter and phenomena at the nanoscale is fast becoming one of the most important c...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
A novel coarse-grained model is developed to elucidate thermodynamics and kinetic mechanisms of DNA ...
DNA nanotechnology has been a rapidly growing field with many applications in drug delivery, energy,...
AbstractThis article presents a general statistical mechanical approach to describe self-folding tog...
Submitted in accompaniment with final year report of MEng Project. DNA tile self-assembly is th...
The three-dimensional structure of DNA contains various sequence-dependent structural information, w...
Although the thermodynamics of DNA hybridization is generally well established, the kinetics of this...
A coarse-grained lattice model of DNA oligonucleotides is proposed to investigate how fundamental th...
Although the thermodynamics of DNA hybridization is generally well established, the kinetics of this...
<div><p>In this paper, we use molecular dynamics simulations to study the assembly of DNA-grafted na...
ABSTRACT: Nucleic acid nanotechnology has enabled researchers to construct a wide range of multidime...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
Much of the excitement regarding nanotechnology stems from the idea of bottom-up self-assembly: th...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
<p>The control of matter and phenomena at the nanoscale is fast becoming one of the most important c...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...
A novel coarse-grained model is developed to elucidate thermodynamics and kinetic mechanisms of DNA ...
DNA nanotechnology has been a rapidly growing field with many applications in drug delivery, energy,...
AbstractThis article presents a general statistical mechanical approach to describe self-folding tog...
Submitted in accompaniment with final year report of MEng Project. DNA tile self-assembly is th...
The three-dimensional structure of DNA contains various sequence-dependent structural information, w...
Although the thermodynamics of DNA hybridization is generally well established, the kinetics of this...
A coarse-grained lattice model of DNA oligonucleotides is proposed to investigate how fundamental th...
Although the thermodynamics of DNA hybridization is generally well established, the kinetics of this...
<div><p>In this paper, we use molecular dynamics simulations to study the assembly of DNA-grafted na...
ABSTRACT: Nucleic acid nanotechnology has enabled researchers to construct a wide range of multidime...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
Much of the excitement regarding nanotechnology stems from the idea of bottom-up self-assembly: th...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
<p>The control of matter and phenomena at the nanoscale is fast becoming one of the most important c...
A promising route to forming novel nanoparticle-based materials is directed self-assembly, where the...