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一种高度灵活的用于纳米线传感器组装的平台,该平台采用光诱导和传统介电泳相结合的方法。

A highly flexible platform for nanowire sensor assembly using a combination of optically induced and conventional dielectrophoresis.

作者信息

Lin Yen-Heng, Ho Kai-Siang, Yang Chin-Tien, Wang Jung-Hao, Lai Chao-Sung

出版信息

Opt Express. 2014 Jun 2;22(11):13811-24. doi: 10.1364/OE.22.013811.

Abstract

The number and position of assembled nanowires cannot be controlled using most nanowire sensor assembling methods. In this paper, we demonstrate a high-yield, highly flexible platform for nanowire sensor assembly using a combination of optically induced dielectrophoresis (ODEP) and conventional dielectrophoresis (DEP). With the ODEP platform, optical images can be used as virtual electrodes to locally turn on a non-contact DEP force and manipulate a micron- or nano-scale substance suspended in fluid. Nanowires were first moved next to the previously deposited metal electrodes using optical images and, then, were attracted to and arranged in the gap between two electrodes through DEP forces generated by switching on alternating current signals to the metal electrodes. A single nanowire can be assembled within 24 seconds using this approach. In addition, the number of nanowires in a single nanowire sensor can be controlled, and the assembly of a single nanowire on each of the adjacent electrodes can also be achieved. The electrical properties of the assembled nanowires were characterized by IV curve measurement. Additionally, the contact resistance between the nanowires and electrodes and the stickiness between the nanowires and substrates were further investigated in this study.

摘要

使用大多数纳米线传感器组装方法无法控制组装好的纳米线的数量和位置。在本文中,我们展示了一种利用光诱导介电泳(ODEP)和传统介电泳(DEP)相结合的高产率、高灵活性的纳米线传感器组装平台。在ODEP平台上,光学图像可作为虚拟电极来局部开启非接触式DEP力,并操纵悬浮在流体中的微米级或纳米级物质。首先利用光学图像将纳米线移动到先前沉积的金属电极旁边,然后通过向金属电极施加交流信号产生的DEP力,将纳米线吸引并排列在两个电极之间的间隙中。使用这种方法,一根纳米线可在24秒内组装完成。此外,单个纳米线传感器中纳米线的数量可以控制,并且还可以在每个相邻电极上实现单根纳米线的组装。通过IV曲线测量对组装好的纳米线的电学性质进行了表征。此外,本研究还进一步研究了纳米线与电极之间的接触电阻以及纳米线与基板之间的粘性。

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