Physical characterization of nanoparticle size and surface modification using particle scattering diffusometry

As the field of colloidal science continues to expand, tools for rapid and accurate physiochemical characterization of colloidal particles will become increasingly important. Here, we present Particle Scattering Diffusometry (PSD), a method that utilizes dark field microscopy and the principles of p...

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Published inBiomicrofluidics Vol. 10; no. 5; pp. 054107 - 54120
Main Authors Clayton, Katherine N., Salameh, Janelle W., Wereley, Steven T., Kinzer-Ursem, Tamara L.
Format Journal Article
LanguageEnglish
Published United States AIP Publishing LLC 01.09.2016
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ISSN1932-1058
1932-1058
DOI10.1063/1.4962992

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Summary:As the field of colloidal science continues to expand, tools for rapid and accurate physiochemical characterization of colloidal particles will become increasingly important. Here, we present Particle Scattering Diffusometry (PSD), a method that utilizes dark field microscopy and the principles of particle image velocimetry to measure the diffusivity of particles undergoing Brownian motion. PSD measures the diffusion coefficient of particles as small as 30 nm in diameter and is used to characterize changes in particle size and distribution as a function of small, label-free, surface modifications of particles. We demonstrate the rapid sizing of particles using three orders-of-magnitude less sample volume than current standard techniques and use PSD to quantify particle uniformity. Furthermore, PSD is sensitive enough to detect biomolecular surface modifications of nanometer thickness. With these capabilities, PSD can reliably aid in a wide variety of applications, including colloid sizing, particle corona characterization, protein footprinting, and quantifying biomolecule activity.
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Author to whom correspondence should be addressed. Electronic mail: tursem@purdue.edu.
ISSN:1932-1058
1932-1058
DOI:10.1063/1.4962992