標題: | 以介電濕潤及液體介電泳實現數位及類比整合微流體晶片 Integrated Digital and Analog Microfluidics by EWOD and LDEP |
作者: | 林彥呈 Yen-Chen Lin 范士岡 Shih-Kang Fan 材料科學與工程學系奈米科技碩博士班 |
關鍵字: | 電動力操控;實驗室晶片;介電濕潤;液體介電泳;Electrokinetic-manipulation;Lab-on-a-Chip;Electrowetting-on-dielectric;Liquid-dielectrophoresis |
公開日期: | 2005 |
摘要: | 電動力是一跨尺度的操作力量,本研究將之應用於實驗室晶片,成功地將以兩種不同的液體驅動力製作在同一晶片上。介電濕潤是一種數位流體系統。另外液體介電泳則是一種驅動流體的方式,我們可視它為一種連續流體系統。其主要優點包含不需流道設計與製程簡單等等。
本研究以結合數位流體和連續流體在同一微流體晶片上,分別藉由介電濕潤以及液體介電泳。並且利用兩種技術的結合,達成奈/微液滴產生系統。除此之外也提供了液體介電泳和毛細管電泳之結合規劃,希望能夠實現在虛擬流道完成DNA之分離。 Electrokinetic force is a cross-scale manipulation mechanism. In this research, we applied the electrokinetic force in Lab-on-a-Chip and succeed to combibe two kinds of liquid actuation. Electrowetting-on-dielectric(EWOD) is a digital microfluidic system. On the other hand, Liquid-dielectrophoresis(LDEP) is also a method for driving fluids, and we could see it as an analog microfluidic system. Advantages of these techniques including non-designing-channel and easily-process. In this research, we combined digital microfluids and analog microfluids on a single chip by using EWOD and LDE. By using these techniques, we succeed to obtain a nano/micro-droplet-creating-system. Otherwise, we also hope to separate DNA in a virtual-channel by combing LDEP and capillary electrophorseis(CE). |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009352515 http://hdl.handle.net/11536/79886 |
Appears in Collections: | Thesis |