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DEVELOPMENT OF NANOPARTICLES SIZING METHOD BASED ON FLUORESCENCE POLARIZATION

Yuki Ishizaki, Terutake Hayashi, Masaki Michihata, Yasuhiro Takaya

Abstract

We suggest a novel nanoparticle sizing method based on fluorescence polarization analysis. Particle size evaluation can be achieved by measuring the rotational diffusion coefficient, which is sensitive to the particle size. We develop a rotational diffusion coefficient measurement system and a fluorescent probe, which is labelled to particle. In order to verify the feasibility of the proposed method, fundamental experiments are performed. We measure the rotational diffusion coefficients of gold nanoparticles, whose diameters are 5 nm, 10 nm and 15 nm, using the developed system. The measured rotational diffusion coefficients decrease with increasing the particle size. It indicates that nanoparticle size, which is below 15 nm, can be measured with at least 5 nm resolution.

Keywords
nanoparticle, particle sizing, fluorescence polarization, Brownian motion, dynamic light scattering
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IMEKO-TC14-2013-82.pdf
DOI
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IMEKO TC
TC14 - Measurement of Geometrical Quantities

Event details

Event
TC14 ISMQC 2013
Technical Committee
TC14
Place
Cracow and Kielce, POLAND
Time
11 September 2013 - 13 September 2013
Website
http://www.tu.kielce.pl/ismqc_2013/

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