Synthesis and properties of water-soluble silica nanoparticles

Methods for synthesis and optimum conditions of the formation of stable water-soluble silica nanoparticles are presented. The silica nanoparticles were synthesized by the hydrolytic polycondensation of tetraethoxysilane using two methods: under alkaline conditions (Stöber´s method) or in an acetic a...

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Veröffentlicht in:Russian chemical bulletin 2017-03, Vol.66 (3), p.409-417
Hauptverfasser: Gorbatsevich, O. B., Kholodkov, D. N., Kurkin, T. S., Malakhova, Yu. N., Strel’tsov, D. R., Buzin, A. I., Kazakova, V. V., Muzafarov, A. M.
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container_issue 3
container_start_page 409
container_title Russian chemical bulletin
container_volume 66
creator Gorbatsevich, O. B.
Kholodkov, D. N.
Kurkin, T. S.
Malakhova, Yu. N.
Strel’tsov, D. R.
Buzin, A. I.
Kazakova, V. V.
Muzafarov, A. M.
description Methods for synthesis and optimum conditions of the formation of stable water-soluble silica nanoparticles are presented. The silica nanoparticles were synthesized by the hydrolytic polycondensation of tetraethoxysilane using two methods: under alkaline conditions (Stöber´s method) or in an acetic acid medium followed by the modification by grafting triethylene oxide moieties on the particle surface. The structure of the modified silica nanoparticles was confirmed by the data of IR and NMR spectroscopy. Polydispersity was evaluated by gel permeation chromatography and dynamic light scattering. The formation and stability of Langmuir monolayers of the silica nanoparticles modified by triethylene oxide moieties were studied.
doi_str_mv 10.1007/s11172-017-1748-1
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subjects Acetic acid
Chemistry
Chemistry and Materials Science
Chemistry/Food Science
Dynamic stability
Full Articles
Infrared spectroscopy
Inorganic Chemistry
Liquid chromatography
Monolayers
Nanoparticles
NMR spectroscopy
Organic Chemistry
Photon correlation spectroscopy
Polydispersity
Silicon dioxide
Spectroscopic analysis
Synthesis
Tetraethyl orthosilicate
title Synthesis and properties of water-soluble silica nanoparticles
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