• DocumentCode
    1012101
  • Title

    Single Gold Nanorod Detection Using Confocal Light Absorption and Scattering Spectroscopy

  • Author

    Qiu, Le ; Larson, Timothy A. ; Smith, Danielle K. ; Vitkin, Edward ; Zhang, Songhua ; Modell, Mark D. ; Itzkan, Irving ; Hanlon, Eugene B. ; Korgel, Brian A. ; Sokolov, Konstantin V. ; Perelman, Lev T.

  • Author_Institution
    Harvard Univ., Boston
  • Volume
    13
  • Issue
    6
  • fYear
    2007
  • Firstpage
    1730
  • Lastpage
    1738
  • Abstract
    Gold nanorods have the potential to be employed as extremely bright molecular marker labels for fluorescence, absorption, or scattering imaging of living tissue. However, samples containing a large number of gold nanorods usually exhibit relatively wide spectral lines. This linewidth limits the use of the nanorods as effective molecular labels, since it would be rather difficult to image several types of nanorod markers simultaneously. In addition, the observed linewidth does not agree well with theoretical calculations, which predict significantly narrower absorption and scattering lines. The discrepancy could be explained by apparent broadening because of the contribution of nanorods with various sizes and aspect ratios. We measured native scattering spectra of single gold nanorods with the confocal light absorption and scattering spectroscopy system, and found that single gold nanorods have a narrow spectrum as predicted by the theory, which suggests that nanorod-based molecular markers with controlled narrow aspect ratios, and to a lesser degree size distributions, should provide spectral lines sufficiently narrow for effective biomedical imaging.
  • Keywords
    biological tissues; biomedical optical imaging; fluorescence; gold; infrared spectra; nanobiotechnology; nanostructured materials; visible spectra; Au; aspect ratios; biomedical imaging; confocal light absorption spectroscopy; fluorescence; living tissue; molecular marker labels; nanorod-based molecular markers; scattering spectroscopy; single gold nanorod detection; spectral lines; Absorption; Biomedical measurements; Control systems; Fluorescence; Gold; Light scattering; Lighting control; Size control; Size measurement; Spectroscopy; Confocal light absorption and scattering spectroscopy (CLASS); nanorods; single particle; surface plasmon;
  • fLanguage
    English
  • Journal_Title
    Selected Topics in Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    1077-260X
  • Type

    jour

  • DOI
    10.1109/JSTQE.2007.910802
  • Filename
    4404843