4.8 Article

Chiral and Achiral Nanodumbbell Dimers: The Effect of Geometry on Plasmonic Properties

期刊

ACS NANO
卷 10, 期 6, 页码 6180-6188

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.6b02194

关键词

chiroptical activity; single-particle spectroscopy; localized surface plasmons; self-assembly; gold nanoparticles

资金

  1. Robert A. Welch Foundation [C-1664, C-1222]
  2. Army Research Office (MURI) [W911NF-12-1-0407]
  3. National Science Foundation [CHE1507745]
  4. National Science Foundation Graduate Research Fellowship Program [0940902]
  5. European Research Council (ERC Advanced Grant) [267867]
  6. Spanish Ministerio de Economia y Competitividad [MAT2013-46101-R]
  7. Direct For Mathematical & Physical Scien
  8. Division Of Chemistry [1507745] Funding Source: National Science Foundation

向作者/读者索取更多资源

Metal nanoparticles with a dumbbell-like geometry have plasmonic properties similar to those of their nanorod counterparts, but the unique steric constraints induced by their enlarged tips result in distinct geometries when self-assembled. Here, we investigate gold dumbbells that are assembled into dimers within polymeric micelles. A single-particle approach with correlated scanning electron microscopy and dark-field scattering spectroscopy reveals the effects of dimer geometry variation on the scattering properties. The dimers are prepared using exclusively achiral reagents, and the resulting dimer solution produces no detectable ensemble circular dichroism response. However, single-particle scattering measurements uncover that this dimer sample is a racemic mixture of individual nanostructures with significant positive and negative chiroptical signals. These measurements are complemented with detailed simulations that confirm the influence of various symmetry elements on the overall peak resonance energy, spectral line shape, and circular differential scattering response. This work expands the current understanding of the influence self-assembled geometries have on plasmonic properties, particularly with regard to chiral and/or racemic samples which may have significant optical activity that may be overlooked when using exclusively ensemble characterization techniques.

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