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Fabrication and characterization of nanomaterial-based sensors using dielectrophoresis

机译:介电电泳法制备和表征基于纳米材料的传感器

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摘要

Dielectrophoresis (DEP) is an electrokinetic motion of dielectrically polarized materials in nonuniform electric fields. DEP has been successfully applied to manipulation of nanomaterials including carbon nanotubes (CNTs), metallic nanoparticles, and semiconducting nanowires. Under positive DEP force, which attracts nanomaterials toward the higher field region, nanomaterials are trapped in the electrode gap and automatically establish good electrical connections between them and the external measuring circuit. This feature allows us a fast, simple, and low-cost fabrication of nanomaterial-based sensors based on a bottom-up approach. This paper first presents a theoretical background of DEP phenomena and then reviews recent works of the present author, which were aimed to develop nanomaterial-based sensors, such as a CNT gas sensor and a ZnO nanowire photosensor, using DEP fabrication technique. It is also demonstrated that DEP technique enables self-formation of interfaces between various nanomaterials, which can be also applicable as novel sensing transducers.
机译:介电电泳(DEP)是介电极化材料在非均匀电场中的电动运动。 DEP已成功应用于纳米材料的操纵,包括碳纳米管(CNT),金属纳米颗粒和半导体纳米线。在正DEP力的作用下,纳米材料被吸引到较高的电场区域,纳米材料被困在电极间隙中并自动在它们与外部测量电路之间建立良好的电连接。此功能使我们能够基于自下而上的方法快速,简单且低成本地制造基于纳米材料的传感器。本文首先介绍了DEP现象的理论背景,然后回顾了本作者的最新工作,这些工作旨在利用DEP制造技术开发基于纳米材料的传感器,例如CNT气体传感器和ZnO纳米线光电传感器。还证明了DEP技术可以在各种纳米材料之间实现界面的自形成,这也可以用作新型传感换能器。

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