2015Advanced MaterialsRequires access

Patterned Materials: A Review of Patterned Organic Bioelectronic Materials and their Biomedical Applications (Adv. Mater. 46/2015)

Soo-Hyun Park, You Jung Kang, Sheereen Majd

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Abstract

Organic materials such as conducting polymers, carbon nanotubes, and graphene are emerging as new frontiers in bioelectronics. The rapidly growing field of organic bioelectronics is accompanied by the development of patterning techniques that enable the design of sophisticated biomedical devices. On page 7583, S. Majd and co-workers present a thorough review on the lithographic techniques applied for the patterning of organic bioelectronic materials and their biomedical applications.

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What this paper is about

Organic materials such as conducting polymers, carbon nanotubes, and graphene are emerging as new frontiers in bioelectronics. The rapidly growing field of organic bioelectronics is accompanied by the development of patterning techniques that enable the design of sophisticated biomedical devices. On page 7583, S. Majd and co-workers present a thorough review on the lithographic techniques applied for the patterning of organic bioelectronic materials and their biomedical applications.

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Available abstract

Organic materials such as conducting polymers, carbon nanotubes, and graphene are emerging as new frontiers in bioelectronics. The rapidly growing field of organic bioelectronics is accompanied by the development of patterning techniques that enable the design of sophisticated biomedical devices. On page 7583, S. Majd and co-workers present a thorough review on the lithographic techniques applied for the patterning of organic bioelectronic materials and their biomedical applications.

Key concepts: Bioelectronics, Nanotechnology, Materials science, Carbon nanotube, Graphene, Conductive polymer, Lithography, Polymer

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