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author:

Hu, Huifang (Hu, Huifang.) [1] | Feng, Miao (Feng, Miao.) [2] | Zhan, Hongbing (Zhan, Hongbing.) [3]

Indexed by:

EI

Abstract:

An amperometric glucose biosensor based on direct electron transfer of glucose oxidase (GOD) self-assembled on the surface of partially unzipped carbon nanotubes (PUCNTs) modified glassy carbon electrode (GCE) has been successfully fabricated. PUCNTs were synthesized via a facile chemical oxidative etching CNTs and used as a novel immobilization matrix for GOD. The cyclic voltammetric result of the PUCNT/GOD/GCE showed a pair of well-defined and quasi-reversible redox peaks with a formal potential of-0.470 V and a peak to peak separation of 37 mV, revealing that the fast direct electron transfer between GOD and the electrode has been achieved. It is notable that the glucose determination has been achieved in mediator-free condition. The developed biosensor displayed satisfactory analytical performance toward glucose including high sensitivity (19.50 μA mM-1 cm-2), low apparent Michaelis-Menten (5.09 mM), a wide linear range of 0-17 mM, and also preventing the interference from ascorbic acid, uric acid and dopamine usually coexisting with glucose in human blood. In addition, the biosensor acquired excellent storage stabilities. This facile, fast, environment-friendly and economical preparation strategy of PUCNT-GOD may provide a new platform for the fabrication of biocompatible glucose biosensors and other types of biosensors. © 2015 Elsevier B.V. All rights reserved.

Keyword:

Amines Ascorbic acid Biocompatibility Biosensors Carbon nanotubes Electron transitions Etching Glass membrane electrodes Glucose Glucose oxidase Glucose sensors

Community:

  • [ 1 ] [Hu, Huifang]College of Materials Science and Engineering, Fuzhou University, Fuzhou; 350116, China
  • [ 2 ] [Feng, Miao]College of Materials Science and Engineering, Fuzhou University, Fuzhou; 350116, China
  • [ 3 ] [Zhan, Hongbing]College of Materials Science and Engineering, Fuzhou University, Fuzhou; 350116, China

Reprint 's Address:

  • [zhan, hongbing]college of materials science and engineering, fuzhou university, fuzhou; 350116, china

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Source :

Talanta

ISSN: 0039-9140

Year: 2015

Volume: 141

Page: 66-72

4 . 0 3 5

JCR@2015

5 . 6 0 0

JCR@2023

ESI HC Threshold:265

JCR Journal Grade:1

CAS Journal Grade:2

Cited Count:

WoS CC Cited Count:

SCOPUS Cited Count: 18

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 1

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