表面微加工
电泳
毛细管作用
毛细管电泳
微流控
稀释
样品(材料)
自由流电泳
材料科学
歧管(流体力学)
色谱法
样品制备
分析化学(期刊)
化学
纳米技术
制作
机械工程
复合材料
医学
生物化学
替代医学
物理
蛋白质凝胶电泳
病理
聚丙烯酰胺凝胶电泳
工程类
热力学
酶
作者
D. Jed Harrison,Karl Fluri,K. Seiler,Z. Hugh Fan,Carlo S. Effenhauser,A. Manz
出处
期刊:Science
[American Association for the Advancement of Science]
日期:1993-08-13
卷期号:261 (5123): 895-897
被引量:1779
标识
DOI:10.1126/science.261.5123.895
摘要
Micromachining technology was used to prepare chemical analysis systems on glass chips (1 centimeter by 2 centimeters or larger) that utilize electroosmotic pumping to drive fluid flow and electrophoretic separation to distinguish sample components. Capillaries 1 to 10 centimeters long etched in the glass (cross section, 10 micrometers by 30 micrometers) allow for capillary electrophoresis-based separations of amino acids with up to 75,000 theoretical plates in about 15 seconds, and separations of about 600 plates can be effected within 4 seconds. Sample treatment steps within a manifold of intersecting capillaries were demonstrated for a simple sample dilution process. Manipulation of the applied voltages controlled the directions of fluid flow within the manifold. The principles demonstrated in this study can be used to develop a miniaturized system for sample handling and separation with no moving parts.
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