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  4. Chiral plasmonic DNA nanostructures with switchable circular dichroism
 
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2013
Journal Article
Title

Chiral plasmonic DNA nanostructures with switchable circular dichroism

Abstract
Circular dichroism spectra of naturally occurring molecules and also of synthetic chiral arrangements of plasmonic particles often exhibit characteristic bisignate shapes. Such spectra consist of peaks next to dips (or vice versa) and result from the superposition of signals originating from many individual chiral objects oriented randomly in solution. Here we show that by first aligning and then toggling the orientation of DNA-origami-scaffolded nanoparticle helices attached to a substrate, we are able to reversibly switch the optical response between two distinct circular dichroism spectra corresponding to either perpendicular or parallel helix orientation with respect to the light beam. The observed directional circular dichroism of our switchable plasmonic material is in good agreement with predictions based on dipole approximation theory. Such dynamic metamaterials introduce functionality into soft matter-based optical devices and may enable novel data storage schemes or signal modulators.
Author(s)
Schreiber, Robert
Universität München
Luong, Ngoc
Boise State University, Idaho
Fan, Zhiyuan
Ohio University, Athens
Kuzyk, Anton
Max-Planck-Institut für Intelligente Systeme, Stuttgart
Nickels, Philipp C.
Universität München
Zhang, Tao
Universität München
Smith, David M.
Fraunhofer-Institut für Zelltherapie und Immunologie IZI  
Yurke, Bernard
Boise State University, Idaho
Kuang, Wan
Boise State University, Idaho
Govorov, Alexander O.
Ohio University, Athens
Liedl, Tim
Universität München
Journal
Nature Communications  
Open Access
DOI
10.1038/ncomms3948
Additional link
Full text
Language
English
Fraunhofer-Institut für Zelltherapie und Immunologie IZI  
Keyword(s)
  • physical sciences

  • nanotechnology

  • optical physics

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