首页> 外文会议>Symposium on BioMEMS and Bionanotechnology, Apr 1-3, 2002, San Francisco, California >Micro- and Nano-Fabrication of Polymer Based Microfluidic Platforms for BioMEMS Applications
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Micro- and Nano-Fabrication of Polymer Based Microfluidic Platforms for BioMEMS Applications

机译:用于生物MEMS应用的基于聚合物的微流控平台的微细加工和纳米加工

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In this paper, we review the approaches developed in our laboratory for polymer-based microanofabrication. For fabrication of microscale features, UV-LIGA (UV-lithography, electroplating, and molding) technology was applied for low-cost mass production. For fabrication of sub-micron or nanoscale features, a novel nano-manufacturing protocol is being developed. The protocol applies a novel nano-lithography imprinting process on an ultra-precision motion-control station. It is capable of economically producing well-defined pores or channels at the nanometer scale on thin polymer layers. The formed thin layers can be used as nano-filters for chemical or bio-separation. They can also be integrated into miniaturized devices for cell immunoprotection or tissue growth. For bonding of polymer-based microfluidic platforms, a novel resin-gas injection-assisted technique has been developed that achieves both bonding and surface modification. 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.
机译:在本文中,我们回顾了在实验室中开发的基于聚合物的微/纳米加工方法。为了制造微尺度特征,将UV-LIGA(UV光刻,电镀和成型)技术应用于低成本的批量生产。为了制造亚微米或纳米级特征,正在开发一种新颖的纳米制造方案。该协议在超精密运动控制站上应用了新颖的纳米光刻技术。它能够经济地在薄聚合物层上产生纳米级的明确定义的孔或通道。形成的薄层可以用作用于化学或生物分离的纳米过滤器。它们也可以集成到用于细胞免疫保护或组织生长的小型化设备中。为了结合基于聚合物的微流体平台,已经开发了一种新型的树脂-气体注射辅助技术,该技术可以实现结合和表面改性。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。

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