Modeling of a micro-biological sensor field effect for the enzymatic detection of glucose

Author:

Zeggai Oussama12,Belarbi Moussaab3,Ouledabbes Amaria2,Mouloudj Hadj1

Affiliation:

1. Department of Common Core, Faculty of Exact Sciences and Informatics, Hassiba Ben Bouali University, BP 151, 02000 Chlef, Algeria

2. Research Unit Materials and Renewable Energy (URMER), Abou Bekr Belkaïd University, BP 119, Tlemcen, Algeria

3. Laboratory of Micro and Nanophysics — LaMiN, Department of FPST-École Nationale Polytechnique d’Oran-Maurice Audin, BP 1523, Oran 31000, Algeria

Abstract

During these last years, the substantially biological field effect transistors (BioFET) are one of the most abundant classes of electronic sensors for biomolecular detection. The determination of glucose levels using these biosensors, especially in the medical diagnosis and food industries, is gaining popularity. Among them, ion-sensitive field effect transistor (ISFET) is considered one of the most intriguing approaches in electrical biosensitivity technology. The glucose sensor ISFET detects the glucose molecule by catalyzing glucose to gluconic acid and hydrogen peroxide in the presence of oxygen. In this paper, first of all we examine some of the main advantages in this field, the perspective of applications and the main issues in order to stimulate a broader interest in the development of biosensors based on ISFET and to extend their applications for a reliable and sensitive glucose analysis. Thereafter, a biosensor with field effect sensitive to the ions for the detection of glucose is modeled analytically. In the proposed model, the glucose concentration is presented according to the gate voltage. The simulated data show that the analytical model can be used with an electrochemical glucose sensor to predict mechanism’s behavior of detection in the biosensors.

Publisher

World Scientific Pub Co Pte Lt

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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