Precision and Intelligence Laboratory, Tokyo Institute of Technology, R2-6, Nagatsuta-cho, Midori-ku, Yokohama, Kanagawa, 226-8503, Japan.
Small. 2014 Dec 29;10(24):5116-25. doi: 10.1002/smll.201401269. Epub 2014 Aug 13.
In this study, a simple capillary-based approach for producing biconcave polymeric microlenses with uniform size and shape from ternary emulsion droplets is presented. Monodisperse ternary emulsion droplets (0.6-4.0 nL) are produced which contain a photocurable segment of an acrylate monomer and two non-curable segments of silicone oil (SO) by using a microfluidic sheath-flowing droplet generator on a glass chip. The curvature radius of the interfaces separating the droplet segments, as well as the droplet size, and production rate can be flexibly varied by changing the flow conditions of the organic and aqueous phases. Subsequently, off-chip suspension photopolymerization yields non-spherical polymeric microparticles with two spherical concave surfaces templated by two SO segments at random positions. By ultraviolet light irradiation of ternary droplets with two SO segments trapped by the interior wall of a cylindrical microcapillary (internal diameter: 130 μm), biconcave microlenses can be produced with two spherical concave surfaces with a common lens axis. The produced lenses are suitable for use as optical diverging lenses.
在这项研究中,提出了一种简单的基于毛细管的方法,用于从三元乳液滴中制备具有均匀尺寸和形状的双凹聚合物微透镜。通过在玻璃芯片上使用微流控鞘流液滴发生器,制备出单分散的三元乳液滴(0.6-4.0 nL),其中包含丙烯酸盐单体的可光固化段和硅油(SO)的两个不可光固化段。通过改变有机相和水相的流动条件,可以灵活地改变分隔液滴段的界面的曲率半径以及液滴的尺寸和产率。随后,通过在芯片外的悬浮光聚合,得到具有两个球形凹面的非球形聚合物微球,这两个凹面由两个随机位置的 SO 段模板化。通过用圆柱形微毛细管(内径:130 μm)的内壁捕获两个 SO 段的三元液滴的紫外光照射,可以制备出具有两个共轴球形凹面的双凹微透镜。所制备的透镜适合用作光学发散透镜。