Practical components for three-dimensional molecular nanofabrication must be simple to produce, stereopure, rigid, and adaptable. We report a family of DNA tetrahedra, less than 10 nanometers on a side, that can self-assemble in seconds with near-quantitative yield of one diastereomer. They can be connected by programmable DNA linkers. Their triangulated architecture confers structural stability; by compressing a DNA tetrahedron with an atomic force microscope, we have measured the axial compressibility of DNA and observed the buckling of the double helix under high loads
We describe a strategy of scaffolded DNA origami to design and construct 3D molecular cages of tetra...
DNA tetrahedron as the simplest 3D DNA nanostructure has been applied widely in biomedicine and bios...
A tetrahedral nanostructure whose edges are DNA double helices self-assembles spontaneously when fou...
Practical components for three-dimensional molecular nanofabrication must be simple to produce, ster...
Molecular self-assembly offers a 'bottom-up' route to fabrication with subnanometre precision of com...
Molecular self-assembly offers a 'bottom-up' route to fabrication with subnanometre precision of com...
The field of DNA nanotechnology, which utilizes synthetic DNA strands as build-blocks for nanostruct...
DNA nanotechnology makes use of the exquisite self-recognition of DNA in order to build on a molecul...
DNA nanotechnology makes use of the exquisite self-recognition of DNA in order to build on a molecul...
We report the design and construction of a nanometer-sized tetrahedron from a single strand of DNA t...
DNA is a very useful molecule for the programmed self-assembly of 2D and 3D nanoscale objects.1 The ...
Molecular self-assembly offers a ‘bottom-up ’ route to fabrication with subnanometre precision of co...
DNA is a very useful molecule for the programmed self-assembly of 2D and 3D nanoscale objects.1 The ...
DNA is a very useful molecule for the programmed self-assembly of 2D and 3D nanoscale objects.1 The ...
Complex function arises in biology from the proximity and relations amongst different functional uni...
We describe a strategy of scaffolded DNA origami to design and construct 3D molecular cages of tetra...
DNA tetrahedron as the simplest 3D DNA nanostructure has been applied widely in biomedicine and bios...
A tetrahedral nanostructure whose edges are DNA double helices self-assembles spontaneously when fou...
Practical components for three-dimensional molecular nanofabrication must be simple to produce, ster...
Molecular self-assembly offers a 'bottom-up' route to fabrication with subnanometre precision of com...
Molecular self-assembly offers a 'bottom-up' route to fabrication with subnanometre precision of com...
The field of DNA nanotechnology, which utilizes synthetic DNA strands as build-blocks for nanostruct...
DNA nanotechnology makes use of the exquisite self-recognition of DNA in order to build on a molecul...
DNA nanotechnology makes use of the exquisite self-recognition of DNA in order to build on a molecul...
We report the design and construction of a nanometer-sized tetrahedron from a single strand of DNA t...
DNA is a very useful molecule for the programmed self-assembly of 2D and 3D nanoscale objects.1 The ...
Molecular self-assembly offers a ‘bottom-up ’ route to fabrication with subnanometre precision of co...
DNA is a very useful molecule for the programmed self-assembly of 2D and 3D nanoscale objects.1 The ...
DNA is a very useful molecule for the programmed self-assembly of 2D and 3D nanoscale objects.1 The ...
Complex function arises in biology from the proximity and relations amongst different functional uni...
We describe a strategy of scaffolded DNA origami to design and construct 3D molecular cages of tetra...
DNA tetrahedron as the simplest 3D DNA nanostructure has been applied widely in biomedicine and bios...
A tetrahedral nanostructure whose edges are DNA double helices self-assembles spontaneously when fou...