An electrochemical sensing platform of cobalt oxide@gold nanocubes interleaved reduced graphene oxide for the selective determination of hydrazine

Reduced graphene oxide-cobalt oxide nanocube@gold (rGO-Co3O4@Au) nanocomposite was prepared using a one-pot hydrothermal synthesis. The nanocomposite was characterized using the UV-Vis absorption spectroscopy, field emission scanning electron microscopy (FESEM), high resolution transmission electron...

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Main Authors: Shahid, Muhammad Mehmood, Rameshkumar, Perumal, Basirun, Wan Jefrey, Wijayantha, Upul, Chiu, Wee Siong, Khiew, Poi Sim, Huang, Nay Ming
Format: Article
Published: Elsevier 2018
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author Shahid, Muhammad Mehmood
Rameshkumar, Perumal
Basirun, Wan Jefrey
Wijayantha, Upul
Chiu, Wee Siong
Khiew, Poi Sim
Huang, Nay Ming
author_facet Shahid, Muhammad Mehmood
Rameshkumar, Perumal
Basirun, Wan Jefrey
Wijayantha, Upul
Chiu, Wee Siong
Khiew, Poi Sim
Huang, Nay Ming
author_sort Shahid, Muhammad Mehmood
collection UM
description Reduced graphene oxide-cobalt oxide nanocube@gold (rGO-Co3O4@Au) nanocomposite was prepared using a one-pot hydrothermal synthesis. The nanocomposite was characterized using the UV-Vis absorption spectroscopy, field emission scanning electron microscopy (FESEM), high resolution transmission electron microscopy (HRTEM), energy dispersive X-ray (EDX) mapping, X-ray diffraction (XRD) and Raman analyses. The EDX mapping analysis showed the uniform distribution of Au nanoparticles on the Co3O4 surface that made the surface more roughness. The higher degree of reduction of GO was confirmed from the increased intensity ratio of the D and G bands (ID/IG) of the Raman spectrum during the hydrothermal synthesis. The rGO-Co3O4@Au nanocomposite exhibited good electrocatalytic activity towards the oxidation of hydrazine in phosphate buffer (pH 7.2). The detection of hydrazine was carried out using amperometry technique and the current response was linear in the range of 10–620 μM. The limit of detection was found to be 0.443 μM. The selectivity of the nanocomposite for the sensing of hydrazine was studied with the interferents such as NO3 −, SO4 2−, Cl−, Ag+, Na+, K+, ethanol, 4-nitrophenol, ascorbic acid and glucose. The sensing of different concentration of hydrazine present in the real water samples was analysed and an appreciable recovery was found.
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spelling um.eprints-207192019-03-18T04:30:17Z http://eprints.um.edu.my/20719/ An electrochemical sensing platform of cobalt oxide@gold nanocubes interleaved reduced graphene oxide for the selective determination of hydrazine Shahid, Muhammad Mehmood Rameshkumar, Perumal Basirun, Wan Jefrey Wijayantha, Upul Chiu, Wee Siong Khiew, Poi Sim Huang, Nay Ming Q Science (General) QC Physics QD Chemistry Reduced graphene oxide-cobalt oxide nanocube@gold (rGO-Co3O4@Au) nanocomposite was prepared using a one-pot hydrothermal synthesis. The nanocomposite was characterized using the UV-Vis absorption spectroscopy, field emission scanning electron microscopy (FESEM), high resolution transmission electron microscopy (HRTEM), energy dispersive X-ray (EDX) mapping, X-ray diffraction (XRD) and Raman analyses. The EDX mapping analysis showed the uniform distribution of Au nanoparticles on the Co3O4 surface that made the surface more roughness. The higher degree of reduction of GO was confirmed from the increased intensity ratio of the D and G bands (ID/IG) of the Raman spectrum during the hydrothermal synthesis. The rGO-Co3O4@Au nanocomposite exhibited good electrocatalytic activity towards the oxidation of hydrazine in phosphate buffer (pH 7.2). The detection of hydrazine was carried out using amperometry technique and the current response was linear in the range of 10–620 μM. The limit of detection was found to be 0.443 μM. The selectivity of the nanocomposite for the sensing of hydrazine was studied with the interferents such as NO3 −, SO4 2−, Cl−, Ag+, Na+, K+, ethanol, 4-nitrophenol, ascorbic acid and glucose. The sensing of different concentration of hydrazine present in the real water samples was analysed and an appreciable recovery was found. Elsevier 2018 Article PeerReviewed Shahid, Muhammad Mehmood and Rameshkumar, Perumal and Basirun, Wan Jefrey and Wijayantha, Upul and Chiu, Wee Siong and Khiew, Poi Sim and Huang, Nay Ming (2018) An electrochemical sensing platform of cobalt oxide@gold nanocubes interleaved reduced graphene oxide for the selective determination of hydrazine. Electrochimica Acta, 259. pp. 606-616. ISSN 0013-4686, DOI https://doi.org/10.1016/j.electacta.2017.10.157 <https://doi.org/10.1016/j.electacta.2017.10.157>. https://doi.org/10.1016/j.electacta.2017.10.157 doi:10.1016/j.electacta.2017.10.157
spellingShingle Q Science (General)
QC Physics
QD Chemistry
Shahid, Muhammad Mehmood
Rameshkumar, Perumal
Basirun, Wan Jefrey
Wijayantha, Upul
Chiu, Wee Siong
Khiew, Poi Sim
Huang, Nay Ming
An electrochemical sensing platform of cobalt oxide@gold nanocubes interleaved reduced graphene oxide for the selective determination of hydrazine
title An electrochemical sensing platform of cobalt oxide@gold nanocubes interleaved reduced graphene oxide for the selective determination of hydrazine
title_full An electrochemical sensing platform of cobalt oxide@gold nanocubes interleaved reduced graphene oxide for the selective determination of hydrazine
title_fullStr An electrochemical sensing platform of cobalt oxide@gold nanocubes interleaved reduced graphene oxide for the selective determination of hydrazine
title_full_unstemmed An electrochemical sensing platform of cobalt oxide@gold nanocubes interleaved reduced graphene oxide for the selective determination of hydrazine
title_short An electrochemical sensing platform of cobalt oxide@gold nanocubes interleaved reduced graphene oxide for the selective determination of hydrazine
title_sort electrochemical sensing platform of cobalt oxide gold nanocubes interleaved reduced graphene oxide for the selective determination of hydrazine
topic Q Science (General)
QC Physics
QD Chemistry
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