生物传感器
材料科学
微电子
电介质
场效应晶体管
钛酸锶
纳米技术
胆固醇
光电子学
晶体管
电压
化学
电气工程
生物化学
工程类
作者
Abdesslam Bouhenna,Oussama Zeggai,Mousaab Belarbi,Hadj Mouloudj,Amaria Ouledabbes,Sami Khettaf
标识
DOI:10.1149/2162-8777/ad60fd
摘要
This study presents an analytical model of a strontium titanate (SrTiO 3 )-based biological field-effect transistor (BioFET) for cholesterol detection. Known for its high dielectric permittivity, surface charge regulation, and superior ionic and thermal conductivity, SrTiO 3 enhances the functionality of biosensors. The BioFET employs a gate functionalized with a cholesterol-specific enzyme, which facilitates potentiometric measurements of cholesterol concentrations. The model establishes a quantitative relationship between cholesterol concentration and gate voltage in enzyme-immobilized SrTiO 3 , demonstrating the high selectivity of SrTiO 3 -based BioFETs for cholesterol detection. This indicates their potential in developing diagnostic tools for cholesterol-related conditions and monitoring food quality. Additionally, the analytical model effectively predicts the behavior of the detection mechanism in electrochemical BioFET biosensors, underscoring its innovative application in fields such as microelectronics, sensors, and catalysis.
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