A novel coarse-grained model is developed to elucidate thermodynamics and kinetic mechanisms of DNA self-assembly. It accounts for sequence and solvent conditions to capture key experimental results such as sequence-dependent thermal property and salt-dependent persistence length of ssDNA and dsDNA. Moreover, constant-temperature simulations on two single strands of a homogeneous sequence show two main mechanisms of hybridization: a slow slithering mechanism and a one-order faster zippering mechanism. Furthermore, large-scale simulations at a high DNA strand concentration demonstrate that DNA self-assembly is a robust and enthalpically driven process in which the formation of double helices is deciphered to occur via multiple self-assembly ...
A coarse-grained model for DNA that is intended to function realistically at the level of individual...
Submitted in accompaniment with final year report of MEng Project. DNA tile self-assembly is th...
Abstract We study DNA self-assembly and DNA computation using a coarse-grained DNA model within the ...
A novel coarse-grained model is developed to elucidate thermodynamics and kinetic mechanisms of DNA ...
A newly developed coarse-grained model called BioModi is utilized to elucidate the effects of temper...
This thesis considers coarse-grained models of DNA and RNA, developed in particular to study nanotec...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
We introduce a sequence-dependent parametrization for a coarse-grained DNA model [T. E. Ouldridge, A...
We introduce a sequence-dependent parametrization for a coarse-grained DNA model [T. E. Ouldridge, A...
To simulate long time and length scale processes involving DNA it is necessary to use a coarse-grain...
To simulate long time and length scale processes involving DNA it is necessary to use a coarse-grain...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
DNA nanotechnology has been a rapidly growing field with many applications in drug delivery, energy,...
To simulate long time and length scale processes involving DNA it is necessary to use a coarse-grain...
We explore in detail the structural, mechanical, and thermodynamic properties of a coarse-grained mo...
A coarse-grained model for DNA that is intended to function realistically at the level of individual...
Submitted in accompaniment with final year report of MEng Project. DNA tile self-assembly is th...
Abstract We study DNA self-assembly and DNA computation using a coarse-grained DNA model within the ...
A novel coarse-grained model is developed to elucidate thermodynamics and kinetic mechanisms of DNA ...
A newly developed coarse-grained model called BioModi is utilized to elucidate the effects of temper...
This thesis considers coarse-grained models of DNA and RNA, developed in particular to study nanotec...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
We introduce a sequence-dependent parametrization for a coarse-grained DNA model [T. E. Ouldridge, A...
We introduce a sequence-dependent parametrization for a coarse-grained DNA model [T. E. Ouldridge, A...
To simulate long time and length scale processes involving DNA it is necessary to use a coarse-grain...
To simulate long time and length scale processes involving DNA it is necessary to use a coarse-grain...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
DNA nanotechnology has been a rapidly growing field with many applications in drug delivery, energy,...
To simulate long time and length scale processes involving DNA it is necessary to use a coarse-grain...
We explore in detail the structural, mechanical, and thermodynamic properties of a coarse-grained mo...
A coarse-grained model for DNA that is intended to function realistically at the level of individual...
Submitted in accompaniment with final year report of MEng Project. DNA tile self-assembly is th...
Abstract We study DNA self-assembly and DNA computation using a coarse-grained DNA model within the ...