Covalently Linked DNA Nanotubes
The present study introduces an approach to prepare covalently linked DNA nanotubes. A circular DNA that includes at its opposite poles thiol and amine functionalities acts as the building block for the construction of the DNA nanotubes. The circular DNA is cross-linked with a bis-amide-modified nuc...
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Published in: | Nano letters Vol. 10; no. 4; pp. 1458 - 1465 |
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American Chemical Society
14-04-2010
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Abstract | The present study introduces an approach to prepare covalently linked DNA nanotubes. A circular DNA that includes at its opposite poles thiol and amine functionalities acts as the building block for the construction of the DNA nanotubes. The circular DNA is cross-linked with a bis-amide-modified nucleic acid to yield DNA nanowires, and these are subsequently cross-linked by a bis-thiolated nucleic acid to yield the DNA nanotubes. Alternatively, a circular DNA that includes four amine functionalities on its poles is cross-linked in one-step by the bis-thiolated nucleic acid to yield the nanotubes. The resulting nanostructures are stable and nonseparable upon heating. |
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AbstractList | The present study introduces an approach to prepare covalently linked DNA nanotubes. A circular DNA that includes at its opposite poles thiol and amine functionalities acts as the building block for the construction of the DNA nanotubes. The circular DNA is cross-linked with a bis-amide-modified nucleic acid to yield DNA nanowires, and these are subsequently cross-linked by a bis-thiolated nucleic acid to yield the DNA nanotubes. Alternatively, a circular DNA that includes four amine functionalities on its poles is cross-linked in one-step by the bis-thiolated nucleic acid to yield the nanotubes. The resulting nanostructures are stable and nonseparable upon heating. |
Author | Henning, Anja Willner, Itamar Shlyahovsky, Bella Wilner, Ofer I |
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Keywords | nanotubes self-assembly nucleic acids nanowires DNA Amines Thiols Cross-linking Nanotubes Amides Nucleic acids Nanowires Nanostructures Nanostructured materials Heat treatments |
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SubjectTerms | Amines - chemistry Condensed matter: structure, mechanical and thermal properties Cross-disciplinary physics: materials science; rheology DNA, Circular - chemical synthesis DNA, Circular - chemistry Exact sciences and technology Low-dimensional structures (superlattices, quantum well structures, multilayers): structure, and nonelectronic properties Materials science Molecular Structure Nanocrystalline materials Nanoscale materials and structures: fabrication and characterization Nanotechnology - methods Nanotubes Nanotubes - chemistry Particle Size Physics Quantum wires Sulfhydryl Compounds - chemistry Surface Properties Surfaces and interfaces; thin films and whiskers (structure and nonelectronic properties) |
Title | Covalently Linked DNA Nanotubes |
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