An enhanced direct electrochemistry of glucose oxidase at poly(taurine) modified glassy carbon electrode for glucose biosensor

作者:Madhu Rajesh; Devadas Balamurugan; Chen Shen Ming*; Rajkumar Muniyandi
来源:Analytical Methods, 2014, 6(22): 9053-9058.
DOI:10.1039/c4ay01406e

摘要

A novel method for detecting glucose that employs glucose oxidase (GOx) at polytaurine (p-taurine)modified glassy carbon electrode is reported. The polymerization of taurine was assessed by a simple electrochemical approach. The electro-polymerized p-taurine was confirmed by X-ray photoelectron spectroscopy (XPS) and scanning electron microscopy (SEM). Notably, we obtained a good peak-to-peak separation (Delta E-p) of 46 mV for p-taurine/GOx/Nf-modified GCE, indicating an excellent electron transfer process between GOx and the p-taurine-modified electrode. The fabricated composite p-taurine/GOx/Nf provides excellent electrocatalytic activity towards glucose detection. In this investigation, the glucose sensor has been achieved by reductive detection of oxygen consumption without a mediator. The detection of glucose was monitored using cyclic voltammetry (CV) and differential pulse voltammetry (DPV). The obtained limit of detection (LOD) and sensitivity of the proposed glucose sensor were 0.06 mM and 26.58 mu A(-1) mM cm(-2), respectively Moreover, the facile biosensor based on the Tau/GOx/Mf composite is preferred due to its simplicity, long-term stability, ultra high sensitivity, reliability, and durability, rendering practical applications even for real sample systems.

  • 出版日期2014