DNA tile based self-assembly provides a bottom-up approach to construct desired nanostructures. DNA tiles have been directly constructed from ssDNA and readily self-assembled into 2D lattices and 3D superstructures. However, for more complex lattice designs including algorithmic assemblies requiring larger tile sets, a more modular approach could prove useful. This paper reports a new DNA 'sub-tile' strategy to easily create whole families of programmable tiles. Here, we demonstrate the stability and flexibility of our sub-tile structures by constructing 3-, 4- and 6-arm DNA tiles that are subsequently assembled into 2D lattices and 3D nanotubes according to a hierarchical design. Assembly of sub-tiles, tiles, and superstructures ...
DNA has served as an excellent building block to self-assemble into a wide range of one-dimensional ...
Approaches to DNA-based computing by self-assembly require the use of D. T A nanostructures, called...
Approaches to DNA-based computing by self-assembly require the use of D. T A nanostructures, called...
Abstract Self-assembly is the spontaneous self-ordering of substructures into superstructures driven...
DNA tiles provide a promising technique for assembling structures with nanoscale resolution through ...
DNA tiles provide a promising technique for assembling structures with nanoscale resolution through ...
Programmed self-assembly of strands of nucleic acid has proved highly effective for creating a wide ...
Precise control over the nucleation, growth, and termination of self-assembly processes is a fundame...
DNA origami and single-stranded tile (SST) are two proven approaches to self-assemble finite-size co...
Precise control over the nucleation, growth, and termination of self-assembly processes is a fundame...
DNA has served as an excellent building block to self-assemble into a wide range of one-dimensional ...
In this paper we report the design and synthesis of DNA molecules (referred to as DNA tiles) with ...
DNA has served as an excellent building block to self-assemble into a wide range of one-dimensional ...
Abstract DNA tiles serve as the fundamental building blocks for DNA self-assembled nanostructures su...
A big challenge in nanorobotics is the construction of nanoscale objects. DNA is a bio-compatible to...
DNA has served as an excellent building block to self-assemble into a wide range of one-dimensional ...
Approaches to DNA-based computing by self-assembly require the use of D. T A nanostructures, called...
Approaches to DNA-based computing by self-assembly require the use of D. T A nanostructures, called...
Abstract Self-assembly is the spontaneous self-ordering of substructures into superstructures driven...
DNA tiles provide a promising technique for assembling structures with nanoscale resolution through ...
DNA tiles provide a promising technique for assembling structures with nanoscale resolution through ...
Programmed self-assembly of strands of nucleic acid has proved highly effective for creating a wide ...
Precise control over the nucleation, growth, and termination of self-assembly processes is a fundame...
DNA origami and single-stranded tile (SST) are two proven approaches to self-assemble finite-size co...
Precise control over the nucleation, growth, and termination of self-assembly processes is a fundame...
DNA has served as an excellent building block to self-assemble into a wide range of one-dimensional ...
In this paper we report the design and synthesis of DNA molecules (referred to as DNA tiles) with ...
DNA has served as an excellent building block to self-assemble into a wide range of one-dimensional ...
Abstract DNA tiles serve as the fundamental building blocks for DNA self-assembled nanostructures su...
A big challenge in nanorobotics is the construction of nanoscale objects. DNA is a bio-compatible to...
DNA has served as an excellent building block to self-assemble into a wide range of one-dimensional ...
Approaches to DNA-based computing by self-assembly require the use of D. T A nanostructures, called...
Approaches to DNA-based computing by self-assembly require the use of D. T A nanostructures, called...