Nisisako Takasi, Torii T
Precision and Intelligence Laboratory, Tokyo Institute of Technology, R2-6, 4259 Nagatsuta-cho, Midori-ku, Yokohama, Kanagawa, 226-8503, Japan.
Lab Chip. 2008 Feb;8(2):287-93. doi: 10.1039/b713141k. Epub 2007 Nov 23.
In this study, we report the mass production of monodisperse emulsion droplets and particles using microfluidic large-scale integration on a chip. The production module comprises a glass microfluidic chip with planar microfabricated 16-256 droplet-formation units (DFUs) and a palm-sized stainless steel holder having several layers for supplying liquids into the inlets of the mounted chip. By using a module having 128 cross-junctions (i.e., 256 DFUs) arranged circularly on a 4 cm x 4 cm chip, we could produce droplets of photopolymerizable acrylate monomer at a throughput of 320.0 mL h(-1). The product was monodisperse, having a mean diameter of 96.4 microm, with a coefficient of variation (CV) of 1.3%. Subsequent UV polymerization off the module yielded monodisperse acrylic microspheres at a throughput of approximately 0.3 kg h(-1). Another module having 128 co-flow geometries could produce biphasic Janus droplets of black and white segments at 128.0 mL h(-1). The product had a mean diameter of 142.3 microm, with a CV of 3.3%. This co-flow module could also be applied in the mass production of homogeneous monomer droplets.
在本研究中,我们报告了利用芯片上的微流体大规模集成技术大规模生产单分散乳液液滴和颗粒。生产模块包括一个带有平面微加工的16 - 256个液滴形成单元(DFU)的玻璃微流体芯片,以及一个手掌大小的不锈钢支架,该支架有多层用于向安装芯片的入口供应液体。通过使用一个在4 cm×4 cm芯片上圆形排列有128个交叉点(即256个DFU)的模块,我们能够以320.0 mL h⁻¹的通量生产可光聚合丙烯酸酯单体的液滴。产物是单分散的,平均直径为96.4微米,变异系数(CV)为1.3%。随后在模块外进行紫外光聚合,以约0.3 kg h⁻¹的通量得到单分散丙烯酸微球。另一个具有128个共流结构的模块能够以128.0 mL h⁻¹的通量生产黑白段的双相Janus液滴。产物平均直径为142.3微米,CV为3.3%。这个共流模块也可应用于均质单体液滴的大规模生产。