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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Integrated Single-Walled Carbon Nanotube/Microfluidic Devices for the Study of the Sensing Mechanism of Nanotube Sensors
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Integrated Single-Walled Carbon Nanotube/Microfluidic Devices for the Study of the Sensing Mechanism of Nanotube Sensors

机译:集成单壁碳纳米管/微流控装置,用于研究纳米管传感器的传感机理

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摘要

A method to fabricate integrated single-walled carbon nanotube/microfluidic devices was developed.This simple process could be used to directly prepare nanotube thin film transistors within the microfluidic channel and to register SWNT devices with the microfludic channel without the need of an additional alignment step.The microfluidic device was designed to have several inlets that deliver multiple liquid flows to a single main channel.The location and width of each flow in the main channel could be controlled by the relative flow rates.This capability enabled us to study the effect of the location and the coverage area of the liquid flow that contained charged molecules on the conduction of the nanotube devices,providing important information on the sensing mechanism of carbon nanotube sensors.The results showed that in a sensor based on a nanotube thin film field effect transistor,the sensing signal came from target molecules absorbed on or around the nanotubes.The effect from adsorption on metal electrodes was weak.
机译:开发了一种制造集成的单壁碳纳米管/微流体器件的方法,该简单工艺可用于直接在微流体通道内制备纳米管薄膜晶体管并在微流体通道中注册SWNT器件,而无需额外的对准步骤该微流控设备设计为具有多个入口,可将多个液体流输送到单个主通道中,每个通道在主通道中的位置和宽度可通过相对流速控制,此功能使我们能够研究流体的影响结果表明,在基于纳米管薄膜场效应晶体管的传感器中,含碳分子在纳米管器件的导电过程中的位置和覆盖面积,为碳纳米管传感器的传感机理提供了重要信息。感应信号来自吸收在纳米管上或周围的目标分子。在金属电极上的作用较弱。

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