Becker Holger, Gärtner Claudia
microfluidic ChipShop GmbH, Carl-Zeiss-Promenade 10, 07745, Jena, Germany.
Anal Bioanal Chem. 2008 Jan;390(1):89-111. doi: 10.1007/s00216-007-1692-2. Epub 2007 Nov 8.
Polymers have assumed the leading role as substrate materials for microfluidic devices in recent years. They offer a broad range of material parameters as well as material and surface chemical properties which enable microscopic design features that cannot be realised by any other class of materials. A similar range of fabrication technologies exist to generate microfluidic devices from these materials. This review will introduce the currently relevant microfabrication technologies such as replication methods like hot embossing, injection molding, microthermoforming and casting as well as photodefining methods like lithography and laser ablation for microfluidic systems and discuss academic and industrial considerations for their use. A section on back-end processing completes the overview.
近年来,聚合物已成为微流控设备衬底材料的主导。它们具有广泛的材料参数以及材料和表面化学性质,能够实现其他任何一类材料都无法实现的微观设计特征。也存在一系列类似的制造技术,可利用这些材料制造微流控设备。本综述将介绍当前相关的微制造技术,如热压印、注塑成型、微热成型和铸造等复制方法,以及光刻和激光烧蚀等微流控系统的光定义方法,并讨论其使用中的学术和工业考量。关于后端处理的部分完善了概述。