Asthana Amit, Kim Kyeong-Ohn, Perumal Jayakumar, Kim Dong-Myung, Kim Dong-Pyo
Department of Fine Chemical Engineering and Applied Chemistry, Chungnam National University, Daejeon 305-764, Korea.
Lab Chip. 2009 Apr 21;9(8):1138-42. doi: 10.1039/b818987k. Epub 2009 Feb 4.
In this report, we present a non-lithographic embedded template method for rapid and cost-effective fabrication of a monolithic microfluidic device with channels of various sizes. The procedure presented here enables the preparation of microchannels with varying dimensions in a single device without using any sophisticated micromachining instrumentation. In addition, this non-lithographic technique has also been used to fabricate a multilayer-multilevel biopolymer microdevice in a single step. To demonstrate the versatility of the presented method, we have fabricated microfluidic devices with four different materials under different curing/cross linking conditions. We have also demonstrated the application of the fabricated device to generate structured copper alginate microbeads, in vitro protein synthesis in three phase flow, and alternate plugs with liquid spacers.
在本报告中,我们展示了一种非光刻嵌入式模板方法,用于快速且经济高效地制造具有各种尺寸通道的单片微流控装置。这里介绍的方法能够在单个装置中制备具有不同尺寸的微通道,而无需使用任何复杂的微加工仪器。此外,这种非光刻技术还被用于一步制造多层多级生物聚合物微装置。为了证明所提出方法的通用性,我们在不同的固化/交联条件下用四种不同材料制造了微流控装置。我们还展示了所制造装置在生成结构化海藻酸铜微珠、三相流中的体外蛋白质合成以及带有液体间隔物的交替塞子方面的应用。