Role of Au(NPs) in the enhanced response of Au(NPs)-decorated MWCNT electrochemical biosensor

Shahid Mehmood,1 Regina Ciancio,2 Elvio Carlino,2,3 Arshad S Bhatti1 1Department of Physics, Center for Micro and Nano Devices, COMSATS Institute of Information Technology, Islamabad, Pakistan; 2CNR-IOM TASC, Trieste, Italy; 3CNR-IMM, Campus Universitario, Via per Monteroni, Lecce, Italy Backgroun...

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Main Authors: Mehmood S, Ciancio R, Carlino E, Bhatti AS
Format: Article
Language:English
Published: Dove Medical Press 2018-04-01
Series:International Journal of Nanomedicine
Subjects:
Online Access:https://www.dovepress.com/role-of-aunps-in-the-enhanced-response-of-aunps-decorated-mwcnt-electr-peer-reviewed-article-IJN
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spelling doaj-0c184edf59ec4e39863b5f93b0ad7f172020-11-24T22:26:45ZengDove Medical PressInternational Journal of Nanomedicine1178-20132018-04-01Volume 132093210637819Role of Au(NPs) in the enhanced response of Au(NPs)-decorated MWCNT electrochemical biosensorMehmood SCiancio RCarlino EBhatti ASShahid Mehmood,1 Regina Ciancio,2 Elvio Carlino,2,3 Arshad S Bhatti1 1Department of Physics, Center for Micro and Nano Devices, COMSATS Institute of Information Technology, Islamabad, Pakistan; 2CNR-IOM TASC, Trieste, Italy; 3CNR-IMM, Campus Universitario, Via per Monteroni, Lecce, Italy Background: The combination of Au-metallic-NPs and CNTs are a new class of hybrid nanomaterials for the development of electrochemical biosensor. Concentration of Au(nanoparticles [NPs]) in the electrochemical biosensor is crucial for the efficient charge transfer between the Au-NPs-MWCNTs modified electrode and electrolytic solution. Methods: In this work, the charge transfer kinetics in the glassy carbon electrode (GCE) modified with Au(NPs)–multiwalled carbon nanotube (MWCNT) nanohybrid with varied concentrations of Au(NPs) in the range 40–100 nM was studied using electrochemical impedance spectroscopy (EIS). Field emission scanning electron microscopy and transmission electron microscopy confirmed the attachment of Au(NPs) on the surface of MWCNTs. Results: The cyclic voltammetry and EIS results showed that the charge transfer mechanism was diffusion controlled and the rate of charge transfer was dependent on the concentration of Au(NPs) in the nanohybrid. The formation of spherical diffusion zone, which was dependent on the concentration of Au(NPs) in nanohybrids, was attributed to result in 3 times the increase in the charge transfer rate ks, 5 times increase in mass transfer, and 5% (9%) increase in Ipa (Ipc) observed in cyclic voltammetry in 80 nM Au(NP) nanohybrid-modified GCE from MWCNT-modified GCE. The work was extended to probe the effect of charge transfer rates at various concentrations of Au(NPs) in the nanohybrid-modified electrodes in the presence of Escherichia coli. The cyclic voltammetry results clearly showed the best results for 80 nM Au(NPs) in nanohybrid electrode. Conclusion: The present study suggested that the formation of spherical diffusion zone in nanohybrid-modified electrodes is critical for the enhanced electrochemical biosensing applications. Keywords: multiwalled carbon nanotubes, Au nanoparticle–MWCNT nanohybrids, cyclic voltammetery, electrochemical impedance spectroscopyhttps://www.dovepress.com/role-of-aunps-in-the-enhanced-response-of-aunps-decorated-mwcnt-electr-peer-reviewed-article-IJNMulti-walled Carbon nanotubes (MWCNTs)Au nanoparticles (NPs)Au(NPs)-MWCNTs nanohybridscyclic voltammetery (CV)electrochemical impedance spectroscopy (EIS)
collection DOAJ
language English
format Article
sources DOAJ
author Mehmood S
Ciancio R
Carlino E
Bhatti AS
spellingShingle Mehmood S
Ciancio R
Carlino E
Bhatti AS
Role of Au(NPs) in the enhanced response of Au(NPs)-decorated MWCNT electrochemical biosensor
International Journal of Nanomedicine
Multi-walled Carbon nanotubes (MWCNTs)
Au nanoparticles (NPs)
Au(NPs)-MWCNTs nanohybrids
cyclic voltammetery (CV)
electrochemical impedance spectroscopy (EIS)
author_facet Mehmood S
Ciancio R
Carlino E
Bhatti AS
author_sort Mehmood S
title Role of Au(NPs) in the enhanced response of Au(NPs)-decorated MWCNT electrochemical biosensor
title_short Role of Au(NPs) in the enhanced response of Au(NPs)-decorated MWCNT electrochemical biosensor
title_full Role of Au(NPs) in the enhanced response of Au(NPs)-decorated MWCNT electrochemical biosensor
title_fullStr Role of Au(NPs) in the enhanced response of Au(NPs)-decorated MWCNT electrochemical biosensor
title_full_unstemmed Role of Au(NPs) in the enhanced response of Au(NPs)-decorated MWCNT electrochemical biosensor
title_sort role of au(nps) in the enhanced response of au(nps)-decorated mwcnt electrochemical biosensor
publisher Dove Medical Press
series International Journal of Nanomedicine
issn 1178-2013
publishDate 2018-04-01
description Shahid Mehmood,1 Regina Ciancio,2 Elvio Carlino,2,3 Arshad S Bhatti1 1Department of Physics, Center for Micro and Nano Devices, COMSATS Institute of Information Technology, Islamabad, Pakistan; 2CNR-IOM TASC, Trieste, Italy; 3CNR-IMM, Campus Universitario, Via per Monteroni, Lecce, Italy Background: The combination of Au-metallic-NPs and CNTs are a new class of hybrid nanomaterials for the development of electrochemical biosensor. Concentration of Au(nanoparticles [NPs]) in the electrochemical biosensor is crucial for the efficient charge transfer between the Au-NPs-MWCNTs modified electrode and electrolytic solution. Methods: In this work, the charge transfer kinetics in the glassy carbon electrode (GCE) modified with Au(NPs)–multiwalled carbon nanotube (MWCNT) nanohybrid with varied concentrations of Au(NPs) in the range 40–100 nM was studied using electrochemical impedance spectroscopy (EIS). Field emission scanning electron microscopy and transmission electron microscopy confirmed the attachment of Au(NPs) on the surface of MWCNTs. Results: The cyclic voltammetry and EIS results showed that the charge transfer mechanism was diffusion controlled and the rate of charge transfer was dependent on the concentration of Au(NPs) in the nanohybrid. The formation of spherical diffusion zone, which was dependent on the concentration of Au(NPs) in nanohybrids, was attributed to result in 3 times the increase in the charge transfer rate ks, 5 times increase in mass transfer, and 5% (9%) increase in Ipa (Ipc) observed in cyclic voltammetry in 80 nM Au(NP) nanohybrid-modified GCE from MWCNT-modified GCE. The work was extended to probe the effect of charge transfer rates at various concentrations of Au(NPs) in the nanohybrid-modified electrodes in the presence of Escherichia coli. The cyclic voltammetry results clearly showed the best results for 80 nM Au(NPs) in nanohybrid electrode. Conclusion: The present study suggested that the formation of spherical diffusion zone in nanohybrid-modified electrodes is critical for the enhanced electrochemical biosensing applications. Keywords: multiwalled carbon nanotubes, Au nanoparticle–MWCNT nanohybrids, cyclic voltammetery, electrochemical impedance spectroscopy
topic Multi-walled Carbon nanotubes (MWCNTs)
Au nanoparticles (NPs)
Au(NPs)-MWCNTs nanohybrids
cyclic voltammetery (CV)
electrochemical impedance spectroscopy (EIS)
url https://www.dovepress.com/role-of-aunps-in-the-enhanced-response-of-aunps-decorated-mwcnt-electr-peer-reviewed-article-IJN
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