SummaryThe control of the structure of matter is a key goal of nanoscience. DNA is an exciting molecule for control because it forms programmable intermolecular interactions. Stiff DNA structures, such as the double crossover motif, the tensegrity triangle, and the six-helix bundle (6HB) have been used to produce periodic arrays of DNA components. The 6HB motif consists of six DNA double helices flanking an inner cavity whose diameter is similar to that of a double helix. This motif appears to be an excellent candidate to sheathe and control nanorods by inserting them into the cavity, and then to control the placement and orientation of the rod by controlling the DNA sheath. Here, we prototype this kind of control by using a seventh DNA dou...
DNA nanotubes (NTs) have attracted extensive interest as artificial cytoskeletons for biomedical, sy...
DNA is the molecule that encodes our genetic information. DNA nanotechnology is the field that uses ...
Since the first introduction by Seeman in the early 1980s, structural DNA nanotechnology has been ra...
SummaryThe control of the structure of matter is a key goal of nanoscience. DNA is an exciting molec...
The control of the structure of matter is a key goal of nanoscience. DNA is an exciting molecule for...
AbstractStructural DNA nanotechnology consists of combining unusual DNA motifs by specific structura...
DNA nanotechnology combines unusual DNA motifs with sticky‐ended cohesion to build polyhedral object...
DMA nanotubes are cylinder-like structures formed from DNA double-helical molecules whose helix axes...
Structural DNA nanotechnogy has found its application in nanomechanical devices, molecular computati...
Earlier studies in DNA self-assembly have foretold the feasibility of building addressable nanostruc...
DNA with its special base pairing capability has been proved to be one of the best material for prog...
Self-assembled nanostructures provide an exciting opportunity to generate new materials with molecul...
Structural DNA Nanotechnology uses unusual DNA motifs to build target shapes and arrangements. These...
Among the key goals of structural DNA nanotechnology are to build highly ordered structures self-ass...
AbstractBranched DNA motifs can be designed to assume a variety of shapes and structures. These stru...
DNA nanotubes (NTs) have attracted extensive interest as artificial cytoskeletons for biomedical, sy...
DNA is the molecule that encodes our genetic information. DNA nanotechnology is the field that uses ...
Since the first introduction by Seeman in the early 1980s, structural DNA nanotechnology has been ra...
SummaryThe control of the structure of matter is a key goal of nanoscience. DNA is an exciting molec...
The control of the structure of matter is a key goal of nanoscience. DNA is an exciting molecule for...
AbstractStructural DNA nanotechnology consists of combining unusual DNA motifs by specific structura...
DNA nanotechnology combines unusual DNA motifs with sticky‐ended cohesion to build polyhedral object...
DMA nanotubes are cylinder-like structures formed from DNA double-helical molecules whose helix axes...
Structural DNA nanotechnogy has found its application in nanomechanical devices, molecular computati...
Earlier studies in DNA self-assembly have foretold the feasibility of building addressable nanostruc...
DNA with its special base pairing capability has been proved to be one of the best material for prog...
Self-assembled nanostructures provide an exciting opportunity to generate new materials with molecul...
Structural DNA Nanotechnology uses unusual DNA motifs to build target shapes and arrangements. These...
Among the key goals of structural DNA nanotechnology are to build highly ordered structures self-ass...
AbstractBranched DNA motifs can be designed to assume a variety of shapes and structures. These stru...
DNA nanotubes (NTs) have attracted extensive interest as artificial cytoskeletons for biomedical, sy...
DNA is the molecule that encodes our genetic information. DNA nanotechnology is the field that uses ...
Since the first introduction by Seeman in the early 1980s, structural DNA nanotechnology has been ra...