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A Brief Description of Cyclic Voltammetry Transducer-Based Non-Enzymatic Glucose Biosensor Using Synthesized Graphene Electrodes
by
Ashraf, Hager
, Fahmy Taha, Mohamed
, Caesarendra, Wahyu
in
Biosensors
/ cyclic voltammetry
/ Design and construction
/ Diabetes therapy
/ Electrodes
/ glucose detection
/ Glucose monitors
/ Graphene
/ graphene electrodes
/ Materials
/ non-enzymatic sensor
/ Technology application
2020
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A Brief Description of Cyclic Voltammetry Transducer-Based Non-Enzymatic Glucose Biosensor Using Synthesized Graphene Electrodes
by
Ashraf, Hager
, Fahmy Taha, Mohamed
, Caesarendra, Wahyu
in
Biosensors
/ cyclic voltammetry
/ Design and construction
/ Diabetes therapy
/ Electrodes
/ glucose detection
/ Glucose monitors
/ Graphene
/ graphene electrodes
/ Materials
/ non-enzymatic sensor
/ Technology application
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
A Brief Description of Cyclic Voltammetry Transducer-Based Non-Enzymatic Glucose Biosensor Using Synthesized Graphene Electrodes
by
Ashraf, Hager
, Fahmy Taha, Mohamed
, Caesarendra, Wahyu
in
Biosensors
/ cyclic voltammetry
/ Design and construction
/ Diabetes therapy
/ Electrodes
/ glucose detection
/ Glucose monitors
/ Graphene
/ graphene electrodes
/ Materials
/ non-enzymatic sensor
/ Technology application
2020
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A Brief Description of Cyclic Voltammetry Transducer-Based Non-Enzymatic Glucose Biosensor Using Synthesized Graphene Electrodes
Journal Article
A Brief Description of Cyclic Voltammetry Transducer-Based Non-Enzymatic Glucose Biosensor Using Synthesized Graphene Electrodes
2020
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Overview
The essential disadvantages of conventional glucose enzymatic biosensors such as high fabrication cost, poor stability of enzymes, pH value-dependent, and dedicated limitations, have been increasing the attraction of non-enzymatic glucose sensors research. Beneficially, patients with diabetes could use this type of sensor as a fourth-generation of glucose sensors with a very low cost and high performance. We demonstrate the most common acceptable transducer for a non-enzymatic glucose biosensor with a brief description of how it works. The review describes the utilization of graphene and its composites as new materials for high-performance non-enzymatic glucose biosensors. The electrochemical properties of graphene and the electrochemical characterization using the cyclic voltammetry (CV) technique of electrocatalysis electrodes towards glucose oxidation have been summarized. A recent synthesis method of the graphene-based electrodes for non-enzymatic glucose sensors have been introduced along with this study. Finally, the electrochemical properties such as linearity, sensitivity, and the limit of detection (LOD) for each sensor are introduced with a comparison with each other to figure out their strengths and weaknesses.
Publisher
MDPI AG
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