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Nanoscale wires, nanoscale wire FET devices, and nanotube-electronic hybrid devices for sensing and other applications

机译:纳米线,纳米线FET器件以及用于传感和其他应用的纳米管-电子混合器件

摘要

The present invention generally relates to nanotechnology, including field effect transistors and other devices used as sensors (for example, for electrophysiological studies), nanotube structures, and applications. Certain aspects of the present invention are generally directed to transistors such as field effect transistors, and other similar devices. In one set of embodiments, a field effect transistor is used where a nanoscale wire, for example, a silicon nanowire, acts as a transistor channel connecting a source electrode to a drain electrode. In some cases, a portion of the transistor channel is exposed to an environment that is to be determined, for example, the interior or cytosol of a cell. A nanotube or other suitable fluidic channel may be extended from the transistor channel into a suitable environment, such as a contained environment within a cell, so that the environment is in electrical communication with the transistor channel via the fluidic channel. In some embodiments, the rest of the transistor channel may be coated, e.g., so that the electrical properties of the transistor channel reflect the electrical behavior of the environment that the fluidic channel is in communication with. Other aspects of the invention are generally directed to methods of making such sensors, methods of using such sensors, kits involving such sensors, or the like.
机译:本发明一般涉及纳米技术,包括场效应晶体管和用作传感器(例如,用于电生理研究)的其他装置,纳米管结构和应用。本发明的某些方面通常针对诸如场效应晶体管的晶体管,以及其他类似的器件。在一组实施例中,使用场效应晶体管,其中纳米级线,例如硅纳米线,充当将源电极连接到漏电极的晶体管通道。在某些情况下,晶体管通道的一部分暴露于待确定的环境中,例如,细胞的内部或细胞质。纳米管或其他合适的流体通道可以从晶体管通道延伸到合适的环境中,例如单元内的封闭环境,从而该环境经由流体通道与晶体管通道电连通。在一些实施例中,晶体管通道的其余部分可以被涂覆,例如,使得晶体管通道的电性能反映出流体通道与之连通的环境的电性能。本发明的其他方面通常涉及制造这种传感器的方法,使用这种传感器的方法,涉及这种传感器的套件等。

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