Programmed self-assembly of strands of nucleic acid has proved highly effective for creating a wide range of structures with desired shapes. A particularly successful implementation is DNA origami, in which a long scaffold strand is folded by hundreds of short auxiliary strands into a complex shape. Modular strategies are in principle simpler and more versatile and have been used to assemble DNA or RNA tiles into periodic and algorithmic5 two-dimensional lattices, extended ribbons and tubes, three-dimensional crystals, polyhedra and simple finite two-dimensional shapes. But creating finite yet complex shapes from a large number of uniquely addressable tiles remains challenging. Here we solve this problem with the simplest tile form, a 'sing...
Nucleic acids (DNA and RNA) are widely used to construct nanometre-scale structures with ever increa...
Approaches to DNA-based computing by self-assembly require the use of D. T A nanostructures, called...
ABSTRACT: Controlled nucleation of nanoscale building blocks by geometrically defined seeds implante...
DNA origami and single-stranded tile (SST) are two proven approaches to self-assemble finite-size co...
DNA tile based self-assembly provides a bottom-up approach to construct desired nanostructures. DNA ...
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...
Bottom-up fabrication of nanoscale structures relies on chemical processes to direct self-assembly. ...
DNA origami tilings provide methods for creating complex molecular patterns and shapes using flat DN...
Molecular self-assembly offers a ‘bottom-up ’ route to fabrication with subnanometre precision of co...
International audienceNucleic acids (DNA and RNA) are widely used to construct nanometre-scale struc...
Abstract DNA tiles serve as the fundamental building blocks for DNA self-assembled nanostructures su...
Nucleic acids (DNA and RNA) are widely used to construct nanometre-scale structures with ever increa...
Approaches to DNA-based computing by self-assembly require the use of D. T A nanostructures, called...
‘Bottom-up fabrication’, which exploits the intrinsic properties of atoms and molecules to direct th...
Nucleic acids (DNA and RNA) are widely used to construct nanometre-scale structures with ever increa...
Approaches to DNA-based computing by self-assembly require the use of D. T A nanostructures, called...
ABSTRACT: Controlled nucleation of nanoscale building blocks by geometrically defined seeds implante...
DNA origami and single-stranded tile (SST) are two proven approaches to self-assemble finite-size co...
DNA tile based self-assembly provides a bottom-up approach to construct desired nanostructures. DNA ...
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...
Bottom-up fabrication of nanoscale structures relies on chemical processes to direct self-assembly. ...
DNA origami tilings provide methods for creating complex molecular patterns and shapes using flat DN...
Molecular self-assembly offers a ‘bottom-up ’ route to fabrication with subnanometre precision of co...
International audienceNucleic acids (DNA and RNA) are widely used to construct nanometre-scale struc...
Abstract DNA tiles serve as the fundamental building blocks for DNA self-assembled nanostructures su...
Nucleic acids (DNA and RNA) are widely used to construct nanometre-scale structures with ever increa...
Approaches to DNA-based computing by self-assembly require the use of D. T A nanostructures, called...
‘Bottom-up fabrication’, which exploits the intrinsic properties of atoms and molecules to direct th...
Nucleic acids (DNA and RNA) are widely used to construct nanometre-scale structures with ever increa...
Approaches to DNA-based computing by self-assembly require the use of D. T A nanostructures, called...
ABSTRACT: Controlled nucleation of nanoscale building blocks by geometrically defined seeds implante...