On the Development of Non-enzymatic Sensor for Electrochemical Detection of Glucose
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Date
2024
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Publisher
Library Information Services, COMSATS University Islamabad, Lahore Campus
Abstract
Glucose detection remains essential for food safety applications as well as environmental
monitoring and medical diagnostics. Developing low-cost sensors that can detect glucose
selectively in complicated environments while maintaining high sensitivity and reliability
remains a current challenge. The research aims to develop an electrochemical sensor that
combines high sensitivity and stability using graphene oxide material.Graphene oxide (GO)
synthesis starts with a modified Hummers' method. A nitrogen-doped graphene oxide
(NGO) material results from the sonication combination of GO with melamine. The
sample material gets deposited on a pencil graphite electrode (PGE) before undergoing
further modification through chronoamperometry to electrodeposit a Cu-Ni metal-organic
framework (MOF) layer. The sequence of steps in this technique aims to improve both
stability and electrocatalytic function of the sensor.Both electrochemical impedance
spectroscopy (EIS) and cyclic voltammetry (CV) analyses verify that the sensor performs
at an outstanding level. The sensor shows outstanding repeatability along with increased
glucose sensitivity and powerful selectivity that remains unaffected by interfering
substances. The sensor maintains consistent performance with different electrolyte
conditions which makes it efficient and dependable for practical use.Furthermore, the Cu-
Ni MOF-modified NGO electrode shown enhanced electrochemical properties by
achieving notable improvements in diffusion-controlled electron transfer processes. A
potential approach to glucose detection with excellent sensitivity, selectivity, and stability
is provided by the proposed nanocomposite-based sensor
Description
Keywords
Department of Physics, SP23, Physics, Electrochemical Detection, Glucose, Non-enzymatic Sensor, Dr. Kashif Tufail