Publication Type Journal Article
Title Tip-Specific Functionalization of Gold Nanorods for Plasmonic Biosensing: Effect of Linker Chain Length
Authors Pedro M. R. Paulo Peter Zijlstra Michel Orrit Emilio Garcia-Fernandez Tamara C. S. Pace A. Viana Sílvia M. B. Costa
Groups MPPM
Journal LANGMUIR
Year 2017
Month July
Volume 33
Number 26
Pages 6503-6510
Abstract Gold nanorods are promising platforms for label-free biosensing. We have functionalized gold nanorods with biotin thiol linkers of increasing chain length and evaluated their ability in the molecular detection of streptavidin. We have found an unexpected effect of the increase in linker length, which resulted in a substantial improvement of the plasmon response at surface saturation. The plasmon peak shift increased from 5 to 14 nm, i.e., more than twice the response, between the short and long biotin linkers. This effect is observed only for site-selective tip functionalization, whereas for a full biotin coating there is no improvement observed with the linker length. The improved plasmon response for tip functionalization is attributed to low biotin coverage but is directed to the most sensitive regions, which, combined with a longer chain linker, reduces the steric hindrance for streptavidin binding on the rod s surface. The model sensors were further characterized by measuring their dose-response curves and binding kinetic assays. Simulations of the discrete dipole approximation give theoretical plasmon shifts that compare well with the experimental ones for the long linker but not with those of the short linker, thus suggesting that steric hindrance affects the latter. Our results highlight the importance of specifically functionalizing the plasmonic hot spots in nanoparticle sensors with the adequate density of receptors in order to maximize their response.
DOI http://dx.doi.org/10.1021/acs.langmuir.7b00422
ISBN
Publisher AMER CHEMICAL SOC
Book Title
ISSN 0743-7463
EISSN
Conference Name
Bibtex ID ISI:000405057100007
Observations
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