Addressable high-information-density DNA nanostructures

We present a strategy for self-assembly of the smallest yet reported DNA nanostructures that are also addressable in terms of their DNA-base code. Using linear as well as novel branched three-way DNA oligonucleotide building-blocks we demonstrate the formation of a nano-network's fundamental ce...

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Main Authors: Tumpane, J, Sandin, P, Kumar, R, Powers, V, Lundberg, E, Gale, N, Baglioni, P, Lehn, J, Albinsson, B, Lincoln, P, Wilhelmsson, L, Brown, T, Norden, B
Format: Journal article
Language:English
Published: 2007
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author Tumpane, J
Sandin, P
Kumar, R
Powers, V
Lundberg, E
Gale, N
Baglioni, P
Lehn, J
Albinsson, B
Lincoln, P
Wilhelmsson, L
Brown, T
Norden, B
author_facet Tumpane, J
Sandin, P
Kumar, R
Powers, V
Lundberg, E
Gale, N
Baglioni, P
Lehn, J
Albinsson, B
Lincoln, P
Wilhelmsson, L
Brown, T
Norden, B
author_sort Tumpane, J
collection OXFORD
description We present a strategy for self-assembly of the smallest yet reported DNA nanostructures that are also addressable in terms of their DNA-base code. Using linear as well as novel branched three-way DNA oligonucleotide building-blocks we demonstrate the formation of a nano-network's fundamental cell, a DNA pseudo-hexagon of side 4 nm. The network's inherent addressability will allow functionalization with sub-nanometer precision yielding unprecedented richness in information density, important in the context of Moore's Law and nano-chip technology. © 2007.
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spelling oxford-uuid:fbcb2c9a-9ac2-4e93-b74e-10dacd6f66f52022-03-27T13:16:22ZAddressable high-information-density DNA nanostructuresJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:fbcb2c9a-9ac2-4e93-b74e-10dacd6f66f5EnglishSymplectic Elements at Oxford2007Tumpane, JSandin, PKumar, RPowers, VLundberg, EGale, NBaglioni, PLehn, JAlbinsson, BLincoln, PWilhelmsson, LBrown, TNorden, BWe present a strategy for self-assembly of the smallest yet reported DNA nanostructures that are also addressable in terms of their DNA-base code. Using linear as well as novel branched three-way DNA oligonucleotide building-blocks we demonstrate the formation of a nano-network's fundamental cell, a DNA pseudo-hexagon of side 4 nm. The network's inherent addressability will allow functionalization with sub-nanometer precision yielding unprecedented richness in information density, important in the context of Moore's Law and nano-chip technology. © 2007.
spellingShingle Tumpane, J
Sandin, P
Kumar, R
Powers, V
Lundberg, E
Gale, N
Baglioni, P
Lehn, J
Albinsson, B
Lincoln, P
Wilhelmsson, L
Brown, T
Norden, B
Addressable high-information-density DNA nanostructures
title Addressable high-information-density DNA nanostructures
title_full Addressable high-information-density DNA nanostructures
title_fullStr Addressable high-information-density DNA nanostructures
title_full_unstemmed Addressable high-information-density DNA nanostructures
title_short Addressable high-information-density DNA nanostructures
title_sort addressable high information density dna nanostructures
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