Lee Nae Yoon, Yamada Masumi, Seki Minoru
Department of Chemistry and Biotechnology, School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.
Anal Bioanal Chem. 2005 Nov;383(5):776-82. doi: 10.1007/s00216-005-0073-y. Epub 2005 Nov 5.
We have developed a three-dimensional passive micromixer based on new mixing principles, fluid twisting and flattening. This micromixer is constructed by repeating two microchannel segments, a "main channel" and a "flattened channel", which are very different in size and are arranged perpendicularly. At the intersection of these segments the fluid inside the micromixer is twisted and then, in the flattened channel, the diffusion length is greatly reduced, achieving high mixing efficiency. Several types of micromixer were fabricated and the effect of microchannel geometry on mixing performance was evaluated. We also integrated this micromixer with a miniaturized DNA purification device, in which the concentration of the buffer solution could be rapidly changed, to perform DNA purification based on solid-phase extraction.
我们基于流体扭曲和平坦化这两种新的混合原理,开发了一种三维无源微混合器。这种微混合器由重复两个微通道段构成,一个“主通道”和一个“扁平通道”,它们尺寸差异很大且相互垂直排列。在这些段的交汇处,微混合器内部的流体发生扭曲,然后在扁平通道中,扩散长度大幅减小,从而实现了高混合效率。制作了几种类型的微混合器,并评估了微通道几何形状对混合性能的影响。我们还将这种微混合器与一个小型化的DNA纯化装置集成在一起,该装置中缓冲溶液的浓度可以快速变化,以基于固相萃取进行DNA纯化。