Chemically modified opals as thin permselective nanoporous membranes
MR Newton, AK Bohaty, HS White… - Journal of the American …, 2005 - ACS Publications
Journal of the American Chemical Society, 2005•ACS Publications
Thin-film opals comprising three layers of 440 nm diameter SiO2 spheres were assembled
on Pt electrodes and modified with amino groups on the silica surface. Diffusion of anionic,
cationic, and neutral redox species through the opals was studied by cyclic voltammetry. The
chemically modified opal membranes demonstrate high molecular throughput and, at low
pH, selectively block transport of a cationic redox species relative to that of anionic and
neutral redox species. This permselective behavior is attributed to the electrostatic …
on Pt electrodes and modified with amino groups on the silica surface. Diffusion of anionic,
cationic, and neutral redox species through the opals was studied by cyclic voltammetry. The
chemically modified opal membranes demonstrate high molecular throughput and, at low
pH, selectively block transport of a cationic redox species relative to that of anionic and
neutral redox species. This permselective behavior is attributed to the electrostatic …
Thin-film opals comprising three layers of 440 nm diameter SiO2 spheres were assembled on Pt electrodes and modified with amino groups on the silica surface. Diffusion of anionic, cationic, and neutral redox species through the opals was studied by cyclic voltammetry. The chemically modified opal membranes demonstrate high molecular throughput and, at low pH, selectively block transport of a cationic redox species relative to that of anionic and neutral redox species. This permselective behavior is attributed to the electrostatic interactions that are enhanced by the tortuous pathway within the opal and by the high surface area of the chemically modified spheres.
ACS Publications
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