Department of Chemistry, University of Toronto, 80 Saint George Street, ON M5S3H6, Canada.
Soft Matter. 2018 Dec 5;14(47):9713-9719. doi: 10.1039/c8sm01716f.
This study reports microfluidic generation of Janus droplets that consist of a liquid crystal component (a cholesteric aqueous suspension of cellulose nanocrystals, Ch-CNC) and a mineral oil (MO) component. The composition of the droplets was controlled by varying the relative flow rates of MO and Ch-CNC suspension. The shape of the Ch-CNC component of the droplets was changed from a truncated sphere to a hemisphere to a crescent moon. For these three Ch-CNC phase shapes, the Ch packing of the CNC pseudolayers was preserved, however the Ch pitch reduced, which was ascribed to the change in CNC orientation at the Ch-CNC/MO interface from perpendicular to parallel. The shape of the compound droplets was tuned from a dumbbell to a sphere by reducing interfacial tension between the Ch-CNC suspension and MO phases. Photopolymerization of the monomer mixture introduced in the Ch-CNC phase of the droplets and the removal of the sacrificial MO phase enabled the generation of Ch microgels. The results of this work can be used for exploring new applications of Janus colloids and the fabrication of programmable active soft matter.
本研究报告了由液晶组件(纤维素纳米晶的胆甾相水悬浮液,Ch-CNC)和矿物油(MO)组件组成的 Janus 液滴的微流控生成。通过改变 MO 和 Ch-CNC 悬浮液的相对流速来控制液滴的组成。液滴中 Ch-CNC 成分的形状从截头球体变为半球体再变为新月形。对于这三种 Ch-CNC 相形状,保留了 CNC 伪层的 Ch 堆积,但 Ch 螺距减小,这归因于 Ch-CNC/MO 界面处 CNC 取向从垂直变为平行的变化。通过降低 Ch-CNC 悬浮液和 MO 相之间的界面张力,将复合液滴的形状从哑铃形调至球形。在液滴的 Ch-CNC 相中引入单体混合物并去除牺牲性 MO 相,可实现 Ch 微凝胶的生成。这项工作的结果可用于探索 Janus 胶体的新应用和可编程活性软物质的制造。