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Printable Bioelectronics To Investigate Functional Biological Interfaces

机译:可打印生物电子学研究功能性生物学接口

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Thin-film transistors can be used as high-performance bioelectronic devices to accomplish tasks such as sensing or controlling the release of biological species as well as transducing the electrical activity of cells or even organs, such as the brain. Organic, graphene, or zinc oxide are used as convenient printable semiconducting layers and can lead to high-performance low-cost bioelectronic sensing devices that are potentially very useful for point-of-care applications. Among others, electrolyte-gated transistors are of interest as they can be operated as capacitance-modulated devices, because of the high capacitance of their charge double layers. Specifically, it is the capacitance of the biolayer, being lowest in a series of capacitors, which controls the output current of the device. Such an occurrence allows for extremely high sensitivity towards very weak interactions. All the aspects governing these processes are reviewed here.
机译:薄膜晶体管可以用作高性能生物电子设备,以完成诸如感测或控制生物物种释放以及转导细胞乃至器官(如大脑)的电活动等任务。有机,石墨烯或氧化锌被用作方便的可印刷半导体层,并且可以导致高性能,低成本的生物电子传感设备,这对于即时医疗应用可能非常有用。其中,电解质门控晶体管由于其电荷双层的高电容而可以用作电容调制器件,因此受到关注。具体而言,正是生物层的电容(在一系列电容器中最低)控制着设备的输出电流。这种情况允许对非常弱的相互作用具有极高的敏感性。此处将对管理这些过程的所有方面进行回顾。

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