J. Am. Chem. Soc., 130 (9), 2750 -2751, 2008. 10.1021/ja711074n S0002-7863(71)01074-6
Web Release Date: February 12, 2008

Copyright © 2008 American Chemical Society

Plasmon-Based Nanolenses Assembled on a Well-Defined DNA Template

Sébastien Bidault,* F. Javier García de Abajo, and Albert Polman

Center for Nanophotonics, FOM Institute AMOLF, Kruislaan 407, 1098 SJ Amsterdam, The Netherlands, and Instituto de Óptica, CSIC, Serrano 121, 28006 Madrid, Spain

sebastien.bidault@normalesup.org

Received December 18, 2007

Abstract:

The controlled and reproducible synthesis of closely spaced noble metal nanoparticle groupings is an essential step toward the rational design of nanostructures for surface enhanced Raman scattering with single-molecule sensitivity. In this communication, we demonstrate the facile synthesis of 5, 8, and 18 nm gold particle groupings on a well-defined DNA template by hybridizing monoconjugated gold-DNA building blocks. The obtained nanometer interparticle gaps should yield local intensity enhancements up to 4 orders of magnitude as estimated by Generalized Mie Theory. By tuning the particle size and relative curvatures, we calculate that the maximum enhancement can be optimized and localized on a specific part of the nanostructure. These groupings act as plasmon-based nanolenses assembled on a biomolecular backbone that can be functionalized in proximity to the region of highest field.


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