Modeling and simulation of field-effect biosensors (BioFETs) and their deployment on the nanoHUB
Author:
Publisher
IOP Publishing
Subject
General Physics and Astronomy
Reference30 articles.
1. Development of an Ion-Sensitive Solid-State Device for Neurophysiological Measurements
2. Development, Operation, and Application of the Ion-Sensitive Field-Effect Transistor as a Tool for Electrophysiology
3. Recent advances in biologically sensitive field-effect transistors (BioFETs)
4. Possibilities and limitations of label-free detection of DNA hybridization with field-effect-based devices
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1. The design of a point of care FET biosensor to detect and screen COVID-19;Scientific Reports;2023-03-18
2. Advancement and Challenges of Biosensing Using Field Effect Transistors;Biosensors;2022-08-17
3. Performative Analysis on Ion-Sensitive Field-Effect Transistor by Varying Intrinsic Parameter;Sustainable Technology and Advanced Computing in Electrical Engineering;2022
4. Simulation and Comparison of Current Voltage Characteristics of Si and Ge based Bio Field Effect Transistor by Varying Oxide Thickness to Get Better Sensitivity;Revista Gestão Inovação e Tecnologias;2021-06-05
5. Study of a Fringing Field Biosensor Tunnel-FET;ECS Journal of Solid State Science and Technology;2021-01-01
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