Chemical Physics Letters, Vol.698, 102-109, 2018
Electrochemical supramolecular recognition of hemin-carbon composites
Hemin-graphite oxide-carbon nanotube (hemin-GO-CNT) and hemin-thermally reduced graphite oxidecarbon nanotube (hemin-TRGO-CNT) composites are synthesized and investigated for the electrochemical supramolecular recognition by electron transfer between biomolecules (dopamine and hydrogen peroxide) and the composite electrodes. Redox reaction mechanisms of two composites with dopamine and hydrogen peroxide are explained in detail by using cyclic voltammetry and differential pulse voltammetry. Hemin-TRGO-CNT displays higher electrochemical detection for dopamine and hydrogen peroxide than that of hemin-GO-CNT, exhibiting enhancement of the electron transfer due to the effective immobilization of redox couple of hemin (Fe2+/Fe3+) on the TRGO-CNT surface. (C) 2018 Elsevier B.V. All rights reserved.
Keywords:Hemin;Graphite oxide;Thermally reduced graphite oxide;Carbon nanotube;Biomolecules;Supramolecular recognition