Structural DNA nanotechnology, the assembly of rigid 3D structures of complex yet precise geometries, has recently been used to design dynamic, mechanically compliant nanostructures with tunable equilibrium conformations and conformational distributions. Here we use coarse-grained molecular dynamics simulations to provide insights into the conformational dynamics of a set of mechanically compliant DNA nanostructuresDNA hinges that use single-stranded DNA “springs” to tune the equilibrium conformation of a layered double-stranded DNA “joint” connecting two stiff “arms” constructed from DNA helix bundles. The simulations reproduce the experimentally measured equilibrium angles between hinge arms for a range of hinge designs. The hinges are f...
We present an atomistic model of pillared DNA nanotubes (DNTs) and their elastic properties which wi...
We present an atomistic model of pillared DNA nanotubes (DNTs) and their elastic properties which wi...
DNA origami enables fabrication of precise nanostructures by programming the self-assembly of DNA. W...
Structural DNA nanotechnology, the assembly of rigid 3D structures of complex yet precise geometries...
As detailed structural characterizations of large complex DNA nanostructures are hard to obtain expe...
As detailed structural characterizations of large complex DNA nanostructures are hard to obtain expe...
As detailed structural characterizations of large complex DNA nanostructures are hard to obtain expe...
To study the elastic properties of rodlike DNA nanostructures, we perform long simulations of these ...
AbstractWe studied the structure and mechanical properties of DNA i-motif nanowires by means of mole...
Synthetic DNA is a highly programmable nanoscale material that can be designed to self-assemble into...
AbstractCrossover motifs are integral components for designing DNA-based nanostructures and nanomech...
Crossover motifs are integral components for designing DNA-based nanostructures and nanomechanical d...
Crossover motifs are integral components for designing DNA-based nanostructures and nanomechanical d...
Biological processes manipulating DNA test its physical properties. Atomistic molecular dynamics sim...
We present an atomistic model of pillared DNA nanotubes (DNTs) and their elastic properties which wi...
We present an atomistic model of pillared DNA nanotubes (DNTs) and their elastic properties which wi...
We present an atomistic model of pillared DNA nanotubes (DNTs) and their elastic properties which wi...
DNA origami enables fabrication of precise nanostructures by programming the self-assembly of DNA. W...
Structural DNA nanotechnology, the assembly of rigid 3D structures of complex yet precise geometries...
As detailed structural characterizations of large complex DNA nanostructures are hard to obtain expe...
As detailed structural characterizations of large complex DNA nanostructures are hard to obtain expe...
As detailed structural characterizations of large complex DNA nanostructures are hard to obtain expe...
To study the elastic properties of rodlike DNA nanostructures, we perform long simulations of these ...
AbstractWe studied the structure and mechanical properties of DNA i-motif nanowires by means of mole...
Synthetic DNA is a highly programmable nanoscale material that can be designed to self-assemble into...
AbstractCrossover motifs are integral components for designing DNA-based nanostructures and nanomech...
Crossover motifs are integral components for designing DNA-based nanostructures and nanomechanical d...
Crossover motifs are integral components for designing DNA-based nanostructures and nanomechanical d...
Biological processes manipulating DNA test its physical properties. Atomistic molecular dynamics sim...
We present an atomistic model of pillared DNA nanotubes (DNTs) and their elastic properties which wi...
We present an atomistic model of pillared DNA nanotubes (DNTs) and their elastic properties which wi...
We present an atomistic model of pillared DNA nanotubes (DNTs) and their elastic properties which wi...
DNA origami enables fabrication of precise nanostructures by programming the self-assembly of DNA. W...