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FLUORESCENCE IMAGING OF ULTRAFILTRATION OF SINGLE NANOPARTICLES FROM COLLOID SOLUTION IN TRACK MEMBRANES

Abstract

The direct imaging of adsorption of single colloidal quantum dotes with a diameter of ~10nm (spherical semiconductor core-shell nanocrystals of CdSeS/ZnS functionalized with organic oleic acid ligands) in nanopores of a nuclear filter (a track polypropylene membrane with the pores diameter of ~500nm) has been realized using fluorescence nanoscopy. It is shown that the nanoparticles are completely retained at a depth of 10 µm when the colloidal solution passes through the membrane pores.

About the Authors

S. I. Kulik
Institute for Spectroscopy of the Russian Academy of Sciences; École Polytechnique Fédérale De Lausanne
Russian Federation


I. Yu. Eremchev
Institute for Spectroscopy of the Russian Academy of Sciences
Russian Federation


P. Yu. Apel
Joint Institute for Nuclear Researches, FLNR; State University “Dubna”
Russian Federation


D. L. Zagorski
Shubnikov Crystallography Institute
Russian Federation


A. V. Naumov
Institute for Spectroscopy of the Russian Academy of Sciences; Moscow State Pedagogical University
Russian Federation


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For citations:


Kulik S.I., Eremchev I.Yu., Apel P.Yu., Zagorski D.L., Naumov A.V. FLUORESCENCE IMAGING OF ULTRAFILTRATION OF SINGLE NANOPARTICLES FROM COLLOID SOLUTION IN TRACK MEMBRANES. Zhurnal Prikladnoii Spektroskopii. 2018;85(5):814-821. (In Russ.)

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