2020Advanced MaterialsOpen access

Organic Bioelectronics: Organic Bioelectronics: From Functional Materials to Next‐Generation Devices and Power Sources (Adv. Mater. 36/2020)

David Ohayon, Sahika Inal

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Abstract

In article number 2001439, Sahika Inal and David Ohayon provide an overview of the recent progress in organic bioelectronics. They examine the identifying features of conjugated polymers and explain how each of these features enable device architectures with unique operation principles. The perspective discusses the role of material design and new fabrication techniques on the development of next-generation biosensors, bioactuators, and their power sources.

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In article number 2001439, Sahika Inal and David Ohayon provide an overview of the recent progress in organic bioelectronics. They examine the identifying features of conjugated polymers and explain how each of these features enable device architectures with unique operation principles. The perspective discusses the role of material design and new fabrication techniques on the development of next-generation biosensors, bioactuators, and their power sources.

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Available abstract

In article number 2001439, Sahika Inal and David Ohayon provide an overview of the recent progress in organic bioelectronics. They examine the identifying features of conjugated polymers and explain how each of these features enable device architectures with unique operation principles. The perspective discusses the role of material design and new fabrication techniques on the development of next-generation biosensors, bioactuators, and their power sources.

Key concepts: Bioelectronics, Nanotechnology, Materials science, Fabrication, Biosensor, Medicine, Pathology, Alternative medicine

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