Controlled assembly of SERRS active oligonucleotide-nanoparticle conjugates

F. McKenzie, D. Graham

Research output: Contribution to journalArticle

18 Citations (Scopus)

Abstract

A novel method for the preparation of SERRS active oligonucleotide-nanoparticle conjugates is described, offering significant advantages over previously reported techniques in terms of versatility and ease of preparation.
LanguageEnglish
Pages5757-5759
Number of pages2
JournalChemical Communications (London)
Issue number38
DOIs
Publication statusPublished - 2 Sep 2009

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Oligonucleotides
Nanoparticles

Keywords

  • experimental
  • SERRS intensity time study
  • dye chemical structures
  • UV-visible spectrum of DNA nanoparticles

Cite this

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title = "Controlled assembly of SERRS active oligonucleotide-nanoparticle conjugates",
abstract = "A novel method for the preparation of SERRS active oligonucleotide-nanoparticle conjugates is described, offering significant advantages over previously reported techniques in terms of versatility and ease of preparation.",
keywords = "experimental, SERRS intensity time study, dye chemical structures, UV-visible spectrum of DNA nanoparticles",
author = "F. McKenzie and D. Graham",
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doi = "10.1039/b913140j",
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Controlled assembly of SERRS active oligonucleotide-nanoparticle conjugates. / McKenzie, F.; Graham, D.

In: Chemical Communications (London), No. 38, 02.09.2009, p. 5757-5759.

Research output: Contribution to journalArticle

TY - JOUR

T1 - Controlled assembly of SERRS active oligonucleotide-nanoparticle conjugates

AU - McKenzie, F.

AU - Graham, D.

PY - 2009/9/2

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AB - A novel method for the preparation of SERRS active oligonucleotide-nanoparticle conjugates is described, offering significant advantages over previously reported techniques in terms of versatility and ease of preparation.

KW - experimental

KW - SERRS intensity time study

KW - dye chemical structures

KW - UV-visible spectrum of DNA nanoparticles

UR - http://dx.doi.org/10.1039/b913140j

U2 - 10.1039/b913140j

DO - 10.1039/b913140j

M3 - Article

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EP - 5759

JO - Chemical Communications (London)

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JF - Chemical Communications (London)

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