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首页> 外文期刊>Optical Materials >Formation of radial aligned and uniform nematic liquid crystal droplets via drop-on-demand inkjet printing into a partially-wet polymer layer
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Formation of radial aligned and uniform nematic liquid crystal droplets via drop-on-demand inkjet printing into a partially-wet polymer layer

机译:通过按需喷墨印刷形成部分湿润的聚合物层,形成径向排列均匀的向列液晶小滴

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摘要

This paper investigates the drop-on-demand inkjet printing of a nematic liquid crystal (LC) onto a variety of substrates. Achieving both a well-defined droplet boundary and uniformity of the LC director in printed droplets can be challenging when traditional alignment surfaces are employed. Despite the increasing popularity of inkjet printing LCs, the mechanisms that are involved during the deposition process such as drop impact, wetting and spreading have received very little attention, in the way of experiments, as viable routes for promoting alignment of the resultant LC droplets. In this work, radial alignment of the director and uniformity of the droplet boundary are achieved in combination via the use of a partially-wet polymer substrate, which makes use of the forces and flow generated during droplet impact and subsequent wetting process. Our findings could have important consequences for future LC inkjet applications, including the development of smart inks, printable sensors and lasers.
机译:本文研究了向列型液晶(LC)的按需喷墨印刷到各种基材上。当使用传统的对准表面时,要在打印的液滴中实现清晰定义的液滴边界和LC指向矢的均匀性可能会很困难。尽管喷墨印刷LC越来越受欢迎,但在实验过程中,沉积过程中涉及的机制(如液滴撞击,润湿和散布)作为促进最终LC液滴对齐的可行途径,很少受到关注。在这项工作中,通过使用部分湿润的聚合物基材,可以同时实现指向矢的径向对准和液滴边界的均匀性,这可以利用液滴撞击和后续润湿过程中产生的力和流动。我们的发现可能对未来的LC喷墨应用产生重要影响,包括智能墨水,可打印传感器和激光器的开发。

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