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research article

Determination of the size of quantum dots by fluorescence spectroscopy

Mutavdzic, Dragosav
•
Xu, Jianmin
•
Thakur, Garima
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2011
Analyst

There has been a lack of quick, simple and reliable methods for determination of nanoparticle size. An investigation of the size of hydrophobic (CdSe) and hydrophilic (CdSe/ZnS) quantum dots was performed by using the maximum position of the corresponding fluorescence spectrum. It has been found that fluorescence spectroscopy is a simple and reliable methodology to estimate the size of both quantum dot types. For a given solution, the homogeneity of the size of quantum dots is correlated to the relationship between the fluorescence maximum position (FMP) and the quantum dot size. This methodology can be extended to the other fluorescent nanoparticles. The employment of evolving factor analysis and multivariate curve resolution-alternating least squares for decomposition of the series of quantum dots fluorescence spectra recorded by a specific measuring procedure reveals the number of quantum dot fractions having different diameters. The size of the quantum dots in a particular group is defined by the FMP of the corresponding component in the decomposed spectrum. These results show that a combination of the fluorescence and appropriate statistical method for decomposition of the emission spectra of nanoparticles may be a quick and trusted method for the screening of the inhomogeneity of their solution.

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Type
research article
DOI
10.1039/c0an00802h
Web of Science ID

WOS:000290627500027

Author(s)
Mutavdzic, Dragosav
Xu, Jianmin
Thakur, Garima
Triulzi, Robert
Kasas, Sandor  
Jeremic, Milorad
Leblanc, Roger
Radotic, Ksenija
Date Issued

2011

Published in
Analyst
Volume

136

Start page

2391

End page

2396

Subjects

Multivariate Curve Resolution

•

Cdse Nanocrystals

•

Nanoparticles

•

Spectra

•

Series

•

Model

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LPMV  
Available on Infoscience
December 16, 2011
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/74139
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