This review article provides an introductory overview of organic bioelectronics, focusing on the creation of electrical devices that use specialized carbon-based semiconducting materials to interact successfully with biological processes.
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organic bioelectronics
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Organic bioelectronics has significant applications in implanted neural interfaces, wearable health monitoring, tissue engineering scaffolds, and drug delivery systems.
Current challenges in organic bioelectronics include long-term stability and safety.
Organic bioelectronics uses specialized carbon-based semiconducting materials to create electrical devices that interact with biological processes.
Organic bioelectronic materials demonstrate flexibility, biocompatibility, and the capacity to carry both electrical and ionic impulses.