Glass/Au Composite Membranes with Gold Nanoparticles Synthesized inside Pores for Selective Ion Transport
Autor: | Maxim O. Novomlinsky, Tatyana Antropova, Vladimir A. Kochemirovsky, Maxim S. Panov, Ilya I. Ryzhkov, D. V. Lebedev, Irina Anfimova |
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Rok vydání: | 2020 |
Předmět: |
Materials science
Nanostructure 02 engineering and technology Porous glass 010402 general chemistry lcsh:Technology 01 natural sciences Article ion transport modelling General Materials Science Surface charge porous glass lcsh:Microscopy Porosity membrane lcsh:QC120-168.85 laser synthesis Nanocomposite lcsh:QH201-278.5 lcsh:T 021001 nanoscience & nanotechnology 0104 chemical sciences Membrane Chemical engineering lcsh:TA1-2040 Colloidal gold gold nanoparticles lcsh:Descriptive and experimental mechanics lcsh:Electrical engineering. Electronics. Nuclear engineering lcsh:Engineering (General). Civil engineering (General) 0210 nano-technology Porous medium lcsh:TK1-9971 |
Zdroj: | Materials, Vol 13, Iss 1767, p 1767 (2020) Materials Volume 13 Issue 7 |
ISSN: | 1996-1944 |
Popis: | Nanocomposite membranes have been actively developed in the last decade. The involvement of nanostructures can improve the permeability, selectivity, and anti-fouling properties of a membrane for improved filtration processes. In this work, we propose a novel type of ion-selective Glass/Au composite membrane based on porous glass (PG), which combines the advantages of porous media and promising selective properties. The latter are achieved by depositing gold nanoparticles into the membrane pores by the laser-induced liquid phase chemical deposition technique. Inside the pores, gold nanoparticles with an average diameter 25 nm were formed, which was confirmed by optical and microscopic studies. To study the transport and selective properties оf the PG/Au composite membrane, the potentiometric method was applied. The uniform potential model was used to determine the surface charge from the experimental data. It was found that the formation of gold nanoparticles inside membrane pores leads to an increase in the surface charge from &minus 2.75 mC/m2 to &minus 5.42 mC/m2. The methods proposed in this work allow the creation of a whole family of composite materials based on porous glasses. In this case, conceptually, the synthesis of these materials will differ only in the selection of initial precursors. |
Databáze: | OpenAIRE |
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