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Electropolymerized Diphenylamine on Functionalized Multiwalled Carbon Nanotube Composite Film and Its Application to Develop a Multifunctional Biosensor
Authors:Tsung‐Hsuan Tsai  Shu‐Hao Ku  Shen‐Ming Chen  Bih‐Show Lou  M Ajmal Ali  Fahad M A Al‐Hemaid
Institution:1. Electroanalysis and Bioelectrochemistry Lab, Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No.1, Section 3, Chung‐Hsiao East Road, Taipei 106, Taiwan (ROC) tel: (886) ‐2‐27017147;2. fax: (886) ‐2‐27025238.W;3. Chemistry Division, Center for General Education, Chang Gung Univeristy, 259, Wen‐Hwa 1st Road, Kwei‐Shan, Tao‐Yuan 333, Taiwan (ROC);4. Department of Botany and Microbiology, College of Science, King Saud University, Riyadh‐11451, Saudi Arabia
Abstract:Diphenylamine (DPA) monomers have been electropolymerized on the amino‐functionalized multiwalled carbon nanotube (AFCNT) composite film modified glassy carbon electrode (GCE) by cyclic voltammetry (CV). The surface morphology of PDPA‐AFCNT was studied using field‐emission scanning electron microscopy (FE‐SEM). The interfacial electron transfer phenomenon at the modified electrode was studied using electrochemical impedance spectroscopy (EIS). The PDPA‐AFCNT/GCE represented a multifunctional sensor and showed good electrocatalytic behavior towards the oxidation of catechol and the reduction of hydrogen peroxide. Rotating‐disk electrode technique was applied to detect catechol with a sensitivity of 1360 µA mM?1 cm?2 and a detection limit of 0.01 mM. Amperometric determination of hydrogen peroxide at the PDPA‐AFCNT film modified electrode results in a linear range from 10 to 800 µM, a sensitivity of 487.1 µA mM?1 cm?2 and detection limit of 1 µM. These results show that the nano‐composite film modified electrode can be utilized to develop a multifunctional sensor.
Keywords:Bionanotechnology  Multifunctional biosensors  Poly diphenylamine  Multiwalled carbon nanotubes  Catechol  Hydrogen peroxide  Cyclic voltammetry
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