Peeni B A, Conkey D B, Barber J P, Kelly R T, Lee M L, Woolley A T, Hawkins A R
Department of Electrical and Computer Engineering, Brigham Young University, Provo, UT 84602, USA.
Lab Chip. 2005 May;5(5):501-5. doi: 10.1039/b500870k. Epub 2005 Mar 23.
Hollow tubular microfluidic channels were fabricated on quartz substrates using sacrificial layer, planar micromachining processes. The channels were created using a bottom-up fabrication technique, namely patterning a photoresist/aluminum sacrificial layer and depositing SiO(2) over the substrate. The photoresist/aluminum layer was removed by etching first with HCl/HNO(3), followed by etching in Nano-Strip, a more stable form of piranha (H(2)SO(4)/H(2)O(2)) stripper. Rapid separation of fluorescently labeled amino acids was performed on a device made with these channels. The fabrication process presented here provides unique control over channel composition and geometry. Future work should allow the fabrication of highly complex and precise devices with integrated analytical capabilities essential for the development of micro-total analysis systems.
采用牺牲层平面微加工工艺在石英衬底上制备了中空管状微流体通道。这些通道采用自下而上的制造技术创建,即对光刻胶/铝牺牲层进行图案化,并在衬底上沉积SiO₂。首先用HCl/HNO₃蚀刻去除光刻胶/铝层,然后在Nano-Strip(一种更稳定形式的食人鱼溶液(H₂SO₄/H₂O₂)剥离剂)中蚀刻。在由这些通道制成的装置上对荧光标记的氨基酸进行了快速分离。这里介绍的制造工艺提供了对通道组成和几何形状的独特控制。未来的工作应该能够制造出具有高度复杂性和精确性的设备,这些设备具备微全分析系统开发所必需的集成分析能力。