Max Planck Institute of Colloids and Interfaces, D-14424 Potsdam, Germany.
Langmuir. 2012 Apr 17;28(15):6436-40. doi: 10.1021/la300042q. Epub 2012 Apr 2.
In this article, we have successfully demonstrated the high-throughput production of colloidal discs via magnetic stirring of aqueous dispersions of monodisperse, sulfate-stabilized polystyrene (PS) spheres in the presence of a good organic solvent. The organic solvent could be water-miscible, such as tetrahydrofuran, or water-immiscible, such as chloroform. Water-immiscible organic solvents were mixed into aqueous dispersions of PS spheres in the presence of sodium dodecyl sulfate. The geometry of the resulting discs could be easily adjusted by the magnetic stirring time and speed, the stirring bar weight, and the amount of organic solvent. Our strategy is simple, scalable, and hardly dependent on the nature of the organic solvent and the PS sphere diameter; PS spheres with diameters ranging from 200 nm to 5 μm were deformed into discs with almost 100% yield. When organic solutions of fluorescent dyes and nanoparticles were used instead of pure organic solvents for PS sphere liquefaction, fluorescent discs were obtained, underlining the effective, efficient encapsulation of the fluorescent substance in the discs.
在本文中,我们成功地展示了通过在单分散硫酸酯稳定聚苯乙烯 (PS) 球的水悬浮液中进行磁搅拌,在存在良好有机溶剂的情况下,实现胶体盘的高通量生产。有机溶剂可以是水溶性的,如四氢呋喃,也可以是水不溶性的,如氯仿。在十二烷基硫酸钠存在下,将水不溶性有机溶剂混入 PS 球的水悬浮液中。所得圆盘的几何形状可以通过磁搅拌时间和速度、搅拌棒重量以及有机溶剂的用量来轻松调节。我们的策略简单、可扩展,并且几乎不依赖于有机溶剂和 PS 球直径的性质;直径从 200nm 到 5μm 的 PS 球被变形为圆盘,产率几乎达到 100%。当使用荧光染料和纳米粒子的有机溶液代替 PS 球的纯有机溶剂进行液化时,获得了荧光盘,突出了荧光物质在圆盘内的有效、高效封装。