<div><p>In this paper, we use molecular dynamics simulations to study the assembly of DNA-grafted nanoparticles to demonstrate specifically the effect of bidispersity in grafted DNA strand length on the thermodynamics and structure of nanoparticle assembly at varying number of grafted single-stranded DNA (ssDNA) strands and number of guanine/cytosine (G/C) bases per strand. At constant number of grafted ssDNA strands and G/C nucleotides per strand, as bidispersity in strand lengths increases, the number of nanoparticles that assemble as well as the number of neighbours per particle in the assembled cluster increases. When the number of G/C nucleotides per strand in short and long strands is equal, the long strands hybridise with the other l...
We use computer simulations and experiments to study the interactions between nanoparticles (NPs) gr...
Submitted in accompaniment with final year report of MEng Project. DNA tile self-assembly is th...
Understanding the nanoscale interactions of DNA, a multifunctional biopolymer with sequence-dependen...
Precise assembly of nanoparticles is crucial for creating spatially engineered materials that can be...
DNA nanotechnology has been a rapidly growing field with many applications in drug delivery, energy,...
DNA linker mediated self-assembly of nanoparticles- grafting complementary sequences of single stran...
<p>The control of matter and phenomena at the nanoscale is fast becoming one of the most important c...
Colloidal particles grafted with single-stranded DNA (ssDNA) chains can self-assemble into a number ...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
Understanding the fundamental principles behind biomemetic nanoparticle self- assembly has been unde...
One of the fundamental challenges of nanoscience and nanotechnology today is to organize nanoparticl...
A newly developed coarse-grained model called BioModi is utilized to elucidate the effects of temper...
A novel coarse-grained model is developed to elucidate thermodynamics and kinetic mechanisms of DNA ...
A coarse-grained lattice model of DNA oligonucleotides is proposed to investigate how fundamental th...
The use of deoxyribonucleic acid (DNA) oligonucleotides has proven to be a powerful and versatile st...
We use computer simulations and experiments to study the interactions between nanoparticles (NPs) gr...
Submitted in accompaniment with final year report of MEng Project. DNA tile self-assembly is th...
Understanding the nanoscale interactions of DNA, a multifunctional biopolymer with sequence-dependen...
Precise assembly of nanoparticles is crucial for creating spatially engineered materials that can be...
DNA nanotechnology has been a rapidly growing field with many applications in drug delivery, energy,...
DNA linker mediated self-assembly of nanoparticles- grafting complementary sequences of single stran...
<p>The control of matter and phenomena at the nanoscale is fast becoming one of the most important c...
Colloidal particles grafted with single-stranded DNA (ssDNA) chains can self-assemble into a number ...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
Understanding the fundamental principles behind biomemetic nanoparticle self- assembly has been unde...
One of the fundamental challenges of nanoscience and nanotechnology today is to organize nanoparticl...
A newly developed coarse-grained model called BioModi is utilized to elucidate the effects of temper...
A novel coarse-grained model is developed to elucidate thermodynamics and kinetic mechanisms of DNA ...
A coarse-grained lattice model of DNA oligonucleotides is proposed to investigate how fundamental th...
The use of deoxyribonucleic acid (DNA) oligonucleotides has proven to be a powerful and versatile st...
We use computer simulations and experiments to study the interactions between nanoparticles (NPs) gr...
Submitted in accompaniment with final year report of MEng Project. DNA tile self-assembly is th...
Understanding the nanoscale interactions of DNA, a multifunctional biopolymer with sequence-dependen...