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Electrochemical synthesis and characterization of ZnO/ERGO/ITO nanocomposite electrodes

2017
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Advisor: Doç. Dr. Tuba Öznülüer

Abstract (EN)

Hierarchical flower-like ZnO/electroreduced graphene oxide (ZnO/ERGO) nanocomposites were synthesized on the ITO electrode surface for the first time through electrochemical co-deposition method from a aqueous mixture containing graphene oxide (GO) and Zn2+ ions at room temperature. During the formation of hierarchical flower-like ZnO nanostructures by one-step cathodic electrochemical deposition, the graphene oxide was electrochemically reduced to graphene simultaneously. The morphological and structural properties of the ZnO/ERGO composites were characterized by Scanning electron microscopy (SEM), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), Energy dispersive X-ray analysis (EDX), Raman spectroscopy and photocurrent measurement. Due to rapid charge transport in the composite materials and the highly crystalline structure of flower-like ZnO/ERGO, the photocurrent responses are exhibited fast and uniform. The electrochemical performance of the ZnO/ERGO composite modified ITO was investigated by amperometric technique, and the resulting electrode displays excellent performance towards hyrogen peroxide (H2O2) at -700 mV in the linear response range from 3,7 to 66,6 μM, with correlation coefficient of 0,9962 and short response time (<5 s). Results show that the ZnO/ERGO composites exhibited a remarkably enhanced electrocatalytic efficiency compared to pure ZnO flowers. The cause of the enhanced electrocatalytic performance could be ascribed to the synergistic effect between ZnO flowers and ERGO sheets.

Author

Dr. Eftade Pınar Gür

How to Cite

Eftade Pınar Gür (Master Thesis). Electrochemical synthesis and characterization of ZnO/ERGO/ITO nanocomposite electrodes, 2017, Atatürk University.

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