We simulate the assembly of DNA copolymers from two types of short duplexes (short double strands with a single-stranded overhang at each end), as described by the oxDNA model. We find that the statistics of chain lengths can be well reproduced by a simple theory that treats the association of particles into ideal (i.e., non-interacting) clusters as a reversible chemical reaction. The reaction constants can be predicted either from SantaLucia's theory or from Wertheim's thermodynamic perturbation theory of association for spherical patchy particles. Our results suggest that theories incorporating very limited molecular detail may be useful for predicting the broad equilibrium features of copolymerisation.info:eu-repo/semantics/publishedVers...
We show that a simple lattice model can provide a unified description of the thermal denaturation of...
DNA beacons are made of short single strands of DNA with terminal regions consisting of complementar...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
We simulate the assembly of DNA copolymers from two types of short duplexes (short double strands wi...
An important goal of self-assembly is to achieve a preprogrammed structure with high fidelity. Here,...
Nanoparticles tethered with DNA strands are promising building blocks for bottom-up nanotechnology, ...
The details surrounding the crossover from wormlike-specific to universal polymeric behavior has bee...
This manuscript is structured into two main parts: an introduction on polymer physics and the analys...
Efficient and useful simulations for problem solving in self-assembly of nanostructures require repr...
The field of complex self-assembly is moving toward the design of multiparticle structures consistin...
We demonstrate the assembly of two bridged circular DNA molecules. The circles are specially enginee...
In this thesis, we develop a novel approach for modelling self-assembling systems that use the singl...
International audienceWe present a quantitative, multi-scale coarse-grained model of DNA coated coll...
ABSTRACT: The kinetics and thermodynamics of loop formation by short segments of double-stranded DNA...
NA bending on length scales shorter than a persistence length plays an integral role in the translat...
We show that a simple lattice model can provide a unified description of the thermal denaturation of...
DNA beacons are made of short single strands of DNA with terminal regions consisting of complementar...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
We simulate the assembly of DNA copolymers from two types of short duplexes (short double strands wi...
An important goal of self-assembly is to achieve a preprogrammed structure with high fidelity. Here,...
Nanoparticles tethered with DNA strands are promising building blocks for bottom-up nanotechnology, ...
The details surrounding the crossover from wormlike-specific to universal polymeric behavior has bee...
This manuscript is structured into two main parts: an introduction on polymer physics and the analys...
Efficient and useful simulations for problem solving in self-assembly of nanostructures require repr...
The field of complex self-assembly is moving toward the design of multiparticle structures consistin...
We demonstrate the assembly of two bridged circular DNA molecules. The circles are specially enginee...
In this thesis, we develop a novel approach for modelling self-assembling systems that use the singl...
International audienceWe present a quantitative, multi-scale coarse-grained model of DNA coated coll...
ABSTRACT: The kinetics and thermodynamics of loop formation by short segments of double-stranded DNA...
NA bending on length scales shorter than a persistence length plays an integral role in the translat...
We show that a simple lattice model can provide a unified description of the thermal denaturation of...
DNA beacons are made of short single strands of DNA with terminal regions consisting of complementar...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...