Reversible Photothermal Melting of DNA in DNA-Gold-Nanoparticle Networks

Photothermal control and in situ monitoring of a reversible biomolecular reaction on nanoparticle surfaces is demonstrated. DNA‐linked gold nanoparticle networks are disassembled through laser irradiation. The laser‐induced temperature increase is quantified using interferometry and network melting...

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Published inSmall (Weinheim an der Bergstrasse, Germany) Vol. 4; no. 5; pp. 607 - 610
Main Authors Reismann, Maximilian, Bretschneider, Jan C., Plessen, Gero von, Simon, Ulrich
Format Journal Article
LanguageEnglish
Published Weinheim WILEY-VCH Verlag 01.05.2008
WILEY‐VCH Verlag
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Abstract Photothermal control and in situ monitoring of a reversible biomolecular reaction on nanoparticle surfaces is demonstrated. DNA‐linked gold nanoparticle networks are disassembled through laser irradiation. The laser‐induced temperature increase is quantified using interferometry and network melting analyses.
AbstractList Photothermal control and in situ monitoring of a reversible biomolecular reaction on nanoparticle surfaces is demonstrated. DNA‐linked gold nanoparticle networks are disassembled through laser irradiation. The laser‐induced temperature increase is quantified using interferometry and network melting analyses.
Author Simon, Ulrich
Reismann, Maximilian
Plessen, Gero von
Bretschneider, Jan C.
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  givenname: Ulrich
  surname: Simon
  fullname: Simon, Ulrich
  email: ulrich.simon@ac.rwth-aachen.de
  organization: Institute of Inorganic Chemistry, RWTH Aachen University Landoltweg1, 52074 Aachen (Germany)
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Snippet Photothermal control and in situ monitoring of a reversible biomolecular reaction on nanoparticle surfaces is demonstrated. DNA‐linked gold nanoparticle...
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SubjectTerms biomolecules
Crystallization - methods
DNA
DNA - chemistry
DNA - radiation effects
DNA - ultrastructure
Gold - chemistry
gold nanoparticles
Light
Macromolecular Substances - chemistry
Materials Testing
Molecular Conformation
nanostructures
Nanostructures - chemistry
Nanostructures - radiation effects
Nanostructures - ultrastructure
Nanotechnology - methods
Particle Size
Photochemistry - methods
photothermal processes
Surface Properties
Temperature
Title Reversible Photothermal Melting of DNA in DNA-Gold-Nanoparticle Networks
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