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A novel bonding method for polymer-based microfluidic platforms

机译:一种基于聚合物的微流体平台的新型键合方法

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摘要

Polymer-based microfluidic platforms have great potential for use in BioMEMS applications because many polymers are low cost, biocompatible, and have good processibility. However, packaging (i.e., sealing the platform with a lid) is a challenging issue in their fabrication. In this paper, we compare several available bonding techniques such as adhesive tape bonding and chemical-assisted bonding with a new method recently developed in our lab: resin-gas injection-assisted bonding. This new approach can easily seal microfluidic devices with micron and sub-micron sized channels without blocking the flow path. It can also be used to modify the channel shape, size, and surface characteristics (e.g., hydrophilicity, degree of protein adsorption). By applying the masking technique, local modification of the channel surface can be achieved through cascade resin-gas injection. Experiments are carried out to demonstrate the bonding efficiency and surface modification.
机译:基于聚合物的微流体平台在生物MEMS应用中具有巨大的潜力,因为许多聚合物成本低,生物相容性好并且具有良好的可加工性。然而,包装(即用盖子密封平台)在其制造中是具有挑战性的问题。在本文中,我们将几种可用的粘合技术(如胶带粘合和化学辅助粘合)与我们实验室最近开发的一种新方法进行了比较:树脂-气体注入辅助粘合。这种新方法可以轻松密封具有微米级和亚微米级通道的微流控设备,而不会阻塞流路。它也可用于修改通道的形状,大小和表面特性(例如,亲水性,蛋白质吸附程度)。通过使用掩膜技术,可以通过级联树脂气体注入实现通道表面的局部改性。进行实验以证明结合效率和表面改性。

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