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Printing Nanotube/Nanowire for Flexible Microsystems

机译:印刷用于柔性微系统的纳米管/纳米线

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Printing has become an emerging manufacturing technology for mechanics, electronics, and consumer products. Additionally, both nanotubes and nanowires have recently been used as materials for sensors and electrodes due to their unique electrical and mechanical properties. Printed electrodes and conductive traces particularly offer versatility of fabricating low-cost, disposable, and flexible electrical devices and microsystems. While various printing methods such as screen printing have been conventional methods for printing conductive traces and electrodes, inkjet printing has recently attracted great attention due to its unique advantages including no template requirement, rapid printing at low cost, on-demand printing capability, and precise control of the printed material. Computer generated conductive traces or electrode patterns can simply be printed on a thin film substrate with proper conductive ink consisting of nanotubes or nanowires. However, in order to develop nanotube or nanowire ink, there are a few challenges that need to be addressed. The most difficult obstacle to overcome is that of nanotubeanowire dispersion within a solution. Other challenges include adjusting surface tension and controlling viscosity of the ink as well as treating the surface of the printing substrate. In an attempt to pave the way for nanomaterial inkjet printing, we present a method for preparing carbon nanotube ink as well as its printing technique. A fully printed electrochemical sensor using inkjet-printed carbon nanotube electrodes is also demonstrated as an example of the possibilities for this technology.
机译:印刷已成为机械,电子和消费产品的新兴制造技术。另外,由于纳米管和纳米线的独特的电气和机械特性,它们最近已被用作传感器和电极的材料。印刷电极和导电迹线特别提供了制造低成本,一次性和灵活的电子设备和微系统的多功能性。尽管诸如丝网印刷之类的各种印刷方法已经是用于印刷导电迹线和电极的常规方法,但是喷墨印刷由于其独特的优点而最近引起了极大的关注,这些优点包括无需模板,低成本快速印刷,按需印刷能力以及精确度高。控制印刷材料。可以使用由纳米管或纳米线组成的适当导电墨水,将计算机生成的导电迹线或电极图案简单地打印在薄膜基板上。但是,为了开发纳米管或纳米线墨水,需要解决一些挑战。要克服的最困难的障碍是溶液中纳米管/纳米线的分散。其他挑战包括调节表面张力和控制油墨的粘度以及处理印刷基材的表面。为了为纳米材料喷墨印刷铺平道路,我们提出了一种制备碳纳米管油墨的方法及其印刷技术。还展示了使用喷墨印刷的碳纳米管电极的全印刷电化学传感器,作为该技术可能性的一个示例。

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