Effect of nanostructured graphene oxide on electrochemical activity of its composite with polyaniline titanium dioxide

Graphene oxide (GO) significantly affects the electrochemical activity of its composite with polyanline titanium dioxide (TiO2). In this work various composites with different GO contents have been successfully synthesized by chemical method to compare not only their material properties but also ele...

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Veröffentlicht in:Advances in natural sciences. Nanoscience and nanotechnology 2016-03, Vol.7 (1), p.015016-015016
Hauptverfasser: Phan, Thi Binh, Luong, Thi Thanh, Mai, Thi Xuan, Mai, Thi Thanh Thuy, Pham, Thi Tot
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container_title Advances in natural sciences. Nanoscience and nanotechnology
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creator Phan, Thi Binh
Luong, Thi Thanh
Mai, Thi Xuan
Mai, Thi Thanh Thuy
Pham, Thi Tot
description Graphene oxide (GO) significantly affects the electrochemical activity of its composite with polyanline titanium dioxide (TiO2). In this work various composites with different GO contents have been successfully synthesized by chemical method to compare not only their material properties but also electrochemical characteristics with each other. The results of an electrochemical impedance study showed that their electrochemical property has been improved due to the presence of GO in a composite matrix. The galvanodynamic polarization explained that among them the composite with GO/Ani ratio in the range of 1-14 exhibits a better performance compared to the other due to yielding a higher current desity (280 A cm−2). The TEM and SEM images which presented the fibres of a composite bundle with the presence of PANi and TiO2 were examined by IR-spectra and x-ray diffraction, respectively.
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subjects Bundling
dynamic current polarization
electrochemical impedance
Graphene
Nanostructure
nanostructured graphene oxide composite
Nanotechnology
Oxides
Polyanilines
Titanium dioxide
X ray diffraction
title Effect of nanostructured graphene oxide on electrochemical activity of its composite with polyaniline titanium dioxide
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