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Electroactive Polymer Nanoparticles Exhibiting Photothermal Properties
Published on: January 8, 2016
Permeability improvements of electropolymerized polypyrrole films using dissolvable nano-CaCO3 particle templates
Luisa-Roxana Popescu Mandoc1, Karine Gorgy, Eleonora-Mihaela Ungureanu
1University "Politehnica" of Bucharest, Faculty of Applied Chemistry and Material Science, Gh. Polizu 1-7, 011061, Bucharest, Romania. em_ungureanu2000@yahoo.com.
Abstract:
The electropolymerisation of N-substituted pyrroles on a dissolvable calcium carbonate nanoparticle template was investigated in order to improve the film permeabilities in aqueous solution. After deposition of CaCO3 nanoparticles on the electrode surface, poly(pyrrole-ammonium) or poly(pyrrole-NTA) (NTA: nitrilotriacetic acid) were electrogenerated around the template structures of the electrodes using potentiostatic methods. The dissolution of nanoparticles in acidic medium leads to the formation of nano-porous structures increasing, therefore, the polypyrrole permeability in aqueous solutions. Histidine-tagged glucose oxidase, chosen as an enzyme model, was immobilised on the modified polypyrrole-NTA via the NTA-Cu(2+)-histidine interactions to validate the proposed method. The described setup led to a twofold increase in the maximum current density from 5 to 10 μA cm(-2) after template dissolution.

