z-logo
Premium
Water/Silica Nanoparticle Interfacial Kinetics of Sulfate, Hydrogen Phosphate, and Dithiocyanate Radicals
Author(s) -
Caregnato Paula,
Bertolotti Sonia G.,
Gonzalez Mónica C.,
Mártire Daniel O.
Publication year - 2005
Publication title -
photochemistry and photobiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.818
H-Index - 131
eISSN - 1751-1097
pISSN - 0031-8655
DOI - 10.1562/2005-07-07-ra-603
Subject(s) - radical , silanol , flash photolysis , chemistry , adsorption , oxidizing agent , reaction rate constant , nanoparticle , photochemistry , kinetics , sulfate , inorganic chemistry , phosphate , hydrogen , catalysis , organic chemistry , materials science , nanotechnology , physics , quantum mechanics
The values of the rate constants for the reactions of the sulfate (2.5 × 10 9 M −1 s −1 ) and hydrogen phosphate (2.2 × 10 8 M −1 s −1 ) radicals with silica nanoparticles are obtained by flash photolysis experiments with silica suspensions containing S 2 O 8 2− or P 2 O 2 4− , respectively. The interaction of these radicals with the silica nanoparticles leads to formation of transients, probably adsorbed sulfate and hydrogen phosphate radicals, with absorption maxima at around 320 and 350 nm, respectively. A different mechanism takes place for the interaction of the less oxidizing dithiocyanate radicals with the silica nanoparticles. These radicals selectively react with the dissociated silanol groups of the nanoparticles with a rate constant at 298.2K of 7 × 10 7 M −1 s −1 (per mol of SiO − groups), and there is no evidence for their adsorption at the surface. All the results are discussed in terms of the Smoluchowski equation and redox potential of the inorganic radicals.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here