Department of Electrical and Computer Engineering, University of British Columbia, Vancouver, BC, Canada.
Lab Chip. 2010 Sep 21;10(18):2358-65. doi: 10.1039/c004051g. Epub 2010 Jun 11.
Multilayer Soft Lithography (MSL) is a robust and mature fabrication technique for the rapid prototyping of microfluidic circuits having thousands of integrated valves. Despite the success and wide application of this method, it is fundamentally a planar fabrication technique which imposes serious design constraints on channel routing, feature density, and fluid handling complexity. We present here methods and related instrumentation to remove these limitations by combining the advantages of MSL processing with laser micromachining using a CO(2) laser ablation system. This system is applied to both the dense integration of layer-layer interconnects and the direct writing of microchannels. Real-time image recognition and computer control allow for robust wafer-scale registration of laser ablation features with moulded channel structures. Ablation rates of up to 8 Hz are achieved with positional accuracy of approximately 20 microm independent of mechanical distortions in the elastomer substrate. We demonstrate these capabilities in the design and fabrication of a production scale multi-laminate micromixer that achieves sub-millisecond mixing of two streams at flow rates up to 1 mL min(-1). The marriage of laser micromachining with MSL-based valve integration allows for high-yield fabrication of topologically complex microfluidic circuits having thousands of layer-layer interconnects and integrated valves.
多层软光刻 (MSL) 是一种用于快速原型制作具有数千个集成阀的微流控电路的稳健且成熟的制造技术。尽管这种方法取得了成功并得到了广泛应用,但它本质上是一种平面制造技术,对通道布线、特征密度和流体处理复杂性都有严重的设计限制。我们在这里提出了一些方法和相关仪器设备,可以通过结合 MSL 处理的优点与使用 CO2 激光烧蚀系统的激光微加工来消除这些限制。该系统应用于层间互连的密集集成和微通道的直接写入。实时图像识别和计算机控制允许激光烧蚀特征与模制通道结构进行稳健的晶圆级注册。达到了高达 8 Hz 的烧蚀速率,位置精度约为 20 微米,与弹性体基底中的机械变形无关。我们在设计和制造一种生产规模的多层微混合器时展示了这些能力,该混合器在高达 1 mL min(-1)的流速下实现了两种流的亚毫秒级混合。激光微加工与基于 MSL 的阀集成的结合允许制造具有数千个层间互连和集成阀的拓扑复杂的微流控电路,具有高产量。