DocumentCode :
104947
Title :
Near-Field Light Scattering Techniques for Measuring Nanoparticle-Surface Interaction Energies and Forces
Author :
Schein, Perry ; Ashcroft, Colby K. ; O´Dell, Dakota ; Adam, Ian S. ; DiPaolo, Brian ; Sabharwal, Manit ; Ce Shi ; Hart, Robert ; Earhart, Christopher ; Erickson, David
Author_Institution :
Sibley Sch. of Mech. & Aerosp. Eng., Cornell Univ., Ithaca, NY, USA
Volume :
33
Issue :
16
fYear :
2015
fDate :
Aug.15, 15 2015
Firstpage :
3494
Lastpage :
3502
Abstract :
Nanoparticles are quickly becoming commonplace in many commercial and industrial products, ranging from cosmetics to pharmaceuticals to medical diagnostics. Predicting the stability of the engineered nanoparticles within these products a priori remains an important and difficult challenge. Here, we describe our techniques for measuring the mechanical interactions between nanoparticles and surfaces using near-field light scattering. Particle-surface interfacial forces are measured by optically “pushing” a particle against a reference surface and observing its motion using scattered near-field light. Unlike atomic force microscopy, this technique is not limited by the thermal noise, but instead takes advantage of it. The integrated waveguide and microfluidic architecture allow for high-throughput measurements of about 1000 particles/h. We characterize the reproducibility of and experimental uncertainty in the measurements made using the NanoTweezer surface instrument. We report surface interaction studies on gold nanoparticles with 50 nm diameters, smaller than previously reported in the literature using similar techniques.
Keywords :
atomic force microscopy; integrated optics; light scattering; nanoparticles; nanophotonics; gold nanoparticles; nanoTweezer surface instrument; nanoparticle-surface interaction energies; nanoparticle-surface interaction forces; near-field light scattering techniques; Atmospheric measurements; Force; Nanoparticles; Optical scattering; Optical surface waves; Optical waveguides; Particle measurements; Biophotonics; Force measurement; Optical Waveguides; force measurement; microfluidics; nanoparticles; optical waveguides;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2015.2440216
Filename :
7128329
Link To Document :
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