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首页> 外文期刊>Science Advances >Internal ion-gated organic electrochemical transistor: A building block for integrated bioelectronics
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Internal ion-gated organic electrochemical transistor: A building block for integrated bioelectronics

机译:内部离子门控有机电化学晶体管:集成生物电子的基础

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摘要

Real-time processing and manipulation of biological signals require bioelectronic devices with integrated components capable of signal amplification, processing, and stimulation. Transistors form the backbone of such circuits, but numerous criteria must be met for efficient and safe operation in biological environments. Here, we introduce an internal ion-gated organic electrochemical transistor (IGT) that uses contained mobile ions within the conducting polymer channel to permit both volumetric capacitance and shortened ionic transit time. The IGT has high transconductance, fast speed, and can be independently gated to create scalable conformable integrated circuits. We demonstrate the ability of the IGT to provide a miniaturized, comfortable interface with human skin using local amplification to record high-quality brain neurophysiological activity. The IGT is an effective transistor architecture for enabling integrated, real-time sensing and stimulation of signals from living organisms.
机译:生物信号的实时处理和操纵需要具有集成组件的生物电子设备,这些组件能够进行信号放大,处理和刺激。晶体管构成了这种电路的骨干,但是必须满足许多标准才能在生物环境中高效安全地工作。在这里,我们介绍一种内部离子门控有机电化学晶体管(IGT),该晶体管在导电聚合物通道内使用包含的可移动离子,以实现体积电容和缩短的离子迁移时间。 IGT具有高跨导,快速的特性,并且可以独立选通以创建可扩展的可兼容集成电路。我们证明了IGT的能力,可以使用局部放大来记录高质量的大脑神经生理活动,从而提供与人体皮肤的小型化,舒适界面。 IGT是一种有效的晶体管架构,可实现对生物体信号的集成,实时感测和刺激。

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