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  1. Research Outputs

Biosensing with Electrolyte Gated Organic Field Effect Transistors

Chapter
Publication Date:
2019
Short description:
Biosensing with Electrolyte Gated Organic Field Effect Transistors / Bortolotti, C.A., Berto, M., Sensi, M., Di Lauro, M., Biscarini, F. (MATERIALS RESEARCH FOUNDATIONS). - In: Organic Bioelectronics for Life Science and Healthcare / [a cura di] Akio Yasuda; Wolfgang Knoll. - 105 SPRINGDALE LN, MILLERSVILLE, PA 17551 USA : Materials Research Forum LLC, 2019. - ISBN 978-1-64490-036-9. - pp. 71-96 [10.21741/9781644900376-2]
abstract:
Electrolyte Gated Organic Field Effect Transistors (EGOFETs) are rapidly emerging as novel players in the field of biosensing: they allow ultra-sensitive, label-free and fast response, and can be employed to sense very diverse analytes, from small molecules to large multimeric proteins. Here, we present the current level of understanding of the working mechanism of EGOFETs, and review some of the most recent and relevant applications as sensors for healthcare and life sciences, discussing advantages and limitations of this technology. EGOFETs appear as a powerful sensing platform that can be readily adapted to the detection of a wide range of biologically relevant species.
Iris type:
Capitolo/Saggio
List of contributors:
Bortolotti, Carlo Augusto; Berto, Marcello; Sensi, Matteo; Di Lauro, Michele; Biscarini, Fabio
Authors of the University:
BERTO MARCELLO
BISCARINI FABIO
BORTOLOTTI Carlo Augusto
SENSI MATTEO
Handle:
https://iris.unimore.it/handle/11380/1220548
Book title:
Organic Bioelectronics for Life Science and Healthcare
Published in:
MATERIALS RESEARCH FOUNDATIONS
Series
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