Zarghami Sara, Xiao Yang, Wagner Pawel, Florea Larisa, Diamond Dermot, Officer David L, Wagner Klaudia
Advanced Materials and BioEngineering Research (AMBER), Centre for Research on Adaptive Nanostructures and Nanodevices and School of Chemistry , Trinity College Dublin , Dublin 2 , Ireland.
Insight Centre for Data Analytics, National Centre for Sensor Research , Dublin City University , Dublin 9 , Ireland.
ACS Appl Mater Interfaces. 2019 Aug 28;11(34):31484-31489. doi: 10.1021/acsami.9b08697. Epub 2019 Aug 13.
The use of phototaxis to move droplets in liquids offers the opportunity to emulate natural processes such as the controlled transport of materials in fluidic environments and to undertake chemistry at specific locations. We have developed a photoactive organic droplet, whose movement in aqueous solution is driven by a photoinitiator, as a result of a light-induced reaction within the droplet generating a Marangoni flow. The photoinitiator not only drives the droplet motion but can also be used to initiate polymerization following transfer of the droplet to a specific location and its merging with a monomer-containing droplet. The same light is used to control the transport of the droplet and the polymerization. The efficacy of this droplet transport and reactor system has been demonstrated by the site-specific underwater polymerization of -isopropylacrylamide to repair a leaking vessel and the adhesion of two materials together.
利用光趋性在液体中移动液滴,为模拟自然过程(如在流体环境中对材料进行可控运输)以及在特定位置进行化学反应提供了契机。我们研发了一种光活性有机液滴,其在水溶液中的移动由光引发剂驱动,这是由于液滴内的光致反应产生了马兰戈尼流。该光引发剂不仅能驱动液滴运动,还可在液滴转移至特定位置并与含单体的液滴合并后,用于引发聚合反应。同一束光用于控制液滴的运输和聚合反应。通过在特定位置进行水下聚合一异丙基丙烯酰胺以修复泄漏容器以及将两种材料粘合在一起,证明了这种液滴运输和反应器系统的有效性。