Measurement of Nanoparticle Concentration Using Quartz Crystal Microgravimetry

Citations

WEB OF SCIENCE

30
Citations

SCOPUS

34

초록

Various nanoscale items (e.g., nanoparticles and nanotubes) have been actively investigated due to their unique physicochemical properties. A common issue encountered in such studies is accurate expression of nanoparticle concentration. Given the critical importance of the dose-response relationship, we present the use of quartz crystal microgravimetry (QCM) to accurately measure nanoparticle concentration in a colloidal suspension. Application of a small drop of the nanoparticle suspension in a volatile solvent to the crystal surface leaves a dry nanoparticle residue after solvent evaporation after which the shift in the crystal resonant frequency is recorded. The instrument was calibrated using a set of serial dilutions of Si and Ag nanopowder in methanol, rhodamine B in methanol, and ferrocenc in cyclohexane. Using QCM, a linear response for nanoparticle concentrations up to 1300 mu g/mL was determined. The developed method was used to determine the concentrations of size-selected, octyl-tenninated Si nanocrystal samples with median diameters in the range 1.1-14.8 nm and also to calculate size-dependent nanocrystal extinction coefficients.

키워드

NANOCRYSTAL QUANTUM DOTS; SILICON NANOPARTICLES; SEMICONDUCTOR NANOCRYSTALS; EXTINCTION COEFFICIENT; CDSE; DELIVERY; CELLS; SI
제목
Measurement of Nanoparticle Concentration Using Quartz Crystal Microgravimetry
저자
Reipa, Vytas; Purdum, Geoffrey; Choi, Jonghoon
DOI
10.1021/jp103861m
발행일
2010-12
유형
Article
저널명
The Journal of Physical Chemistry B
권
114
호
49
페이지
16112 ~ 16117