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Single gold nanorods as optical probes for spectral imaging

  • In this paper, we explain in detail the wavelength dependence of the elastic scattering pattern of individual, optically isolated gold nanorods by using confocal microscopy in combination with higher order laser modes, i.e., radially/azimuthally polarized laser modes. We demonstrate that the spectral dependence of the scattering pattern is mostly caused by the relative strength of the gold nanorods’ plasmonic modes at different wavelengths. Since the gold nanorods’ plasmonic modes are determined by the particles’ geometrical parameter, e.g., size and aspect ratio, as well as the refractive index of the surrounding medium, we show that the spectral dependence of the scattering pattern is a simple, not invasive way to determine, e.g., the gold nanorod aspect ratio or physical variation of the local environment. Thus, a further development of spectral imaging of gold nanorods can lead to the employment of this technique in biomedical assays involving also living samples.

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Metadaten
Author of HS ReutlingenWackenhut, Frank
DOI:https://doi.org/10.1007/s00216-015-8642-1
ISSN:1618-2642
Published in:Analytical and bioanalytical chemistry
Publisher:Springer
Place of publication:Berlin, Heidelberg
Document Type:Journal article
Language:English
Publication year:2015
Volume:407
Issue:14
Page Number:6
First Page:4029
Last Page:4034
DDC classes:540 Chemie
Open access?:Nein
Licence (German):License Logo  In Copyright - Urheberrechtlich geschützt