Zhang Yanzhen, Li Dege, Liu Yonghong, Wittstock Gunther
School of Mathematics and Science, Center of Interface Sciences, Institute of Chemistry, Carl von Ossietzky University of Oldenburg, D-26111, Oldenburg, Germany.
College of Mechanical and Electronic Engineering, China University of Petroleum, 266580, Qingdao, China.
Small. 2018 Jul;14(27):e1801212. doi: 10.1002/smll.201801212. Epub 2018 May 28.
Inkjet printing (IJP) is an old but still vivifying technique for flexible and cost-effective printing of various kinds of functional inks. Normally, IJP can only work in gaseous environments. Here, it is shown that traditional piezoelectric IJP can be performed in liquid environments with a totally different droplet dispensing and manipulating mechanism. With the same piezoelectric nozzle, the volume of the droplets printed in a carrier liquid can be thousands of times smaller than those printed in air. Therefore, this work demonstrates a working mode of traditional IJP with a highly improved resolution opening possibilities for novel applications of the IJP technique.
喷墨打印(IJP)是一种古老但仍具活力的技术,可用于灵活且经济高效地打印各种功能墨水。通常,喷墨打印只能在气态环境中工作。在此,研究表明传统的压电喷墨打印可以在液体环境中进行,且具有完全不同的液滴分配和操控机制。使用相同的压电喷嘴,在载液中打印的液滴体积可比在空气中打印的液滴体积小数千倍。因此,这项工作展示了传统喷墨打印的一种工作模式,其分辨率大幅提高,为喷墨打印技术的新应用开辟了可能性。