Influence of Reduced Graphene Oxide on the Electropolymerization of 5-amino-1-naphthol and the Interaction of 1,4-phenylene Diisothiocyanate with the Poly(5-amino-1-naphtol)/Reduced Graphene Oxide Composite

Polymers
M BaibaracS N Fejer

Abstract

A new composite base on reduced graphene oxide (RGO) and poly(5-amino-1-naphthol) (P5A1N) was synthesized by the electrochemical polymerization of 5-amino-1-naphthol (5A1N) in the presence of HClO4 and H4SiW12O40 onto the surface of Au electrode covered with the RGO sheets. The linear dependence of the current densities of the anodic and cathodic peaks with the scan rate of the potential range (0; 0.8) V vs. SCE, reported during electropolymerization of 5A1N, indicates an electron transfer that is controlled by diffusion. A covalent functionalization of the RGO sheets with P5A1N is argued by: (i) the simultaneous disappearance of the IR band at 1584 cm-1 and the appearance of the new IR bands at 812, 976 and 3744 cm-1, and (ii) the appearance of two Raman lines at 738 and 1428 cm-1. An application of the RGO sheets covalently functionalized with P5A1N is demonstrated to support 1,4-phenylene diisothiocyanate (PDITC), a compound used as a cross-linking agent for various biological applications. The chemical adsorption of PDITC onto the RGO sheets covalently functionalized with P5A1N, which involves the appearance of new functional groups of the type thiourea, was proven by Raman scattering and IR spectroscopy.

References

Feb 20, 2002·Chemical Reviews·Masahiro Sadakane, Eberhard Steckhan
Aug 25, 2010·ACS Nano·Daniela C MarcanoJames M Tour
Jun 10, 2017·The Journal of Chemical Physics·Ireneusz JanikG N R Tripathi
Dec 23, 2016·ACS Sensors·Micah D Brown, Mark H Schoenfisch

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