首页> 外文会议>Nanoengineered Assemblies and Advanced Micro/Nanosystems >A Multi-layer Technology for Biocompatible Polymer Microsystems with Integrated Fluid and Electrical Functionality
【24h】

A Multi-layer Technology for Biocompatible Polymer Microsystems with Integrated Fluid and Electrical Functionality

机译:具有集成的流体和电子功能的生物相容性聚合物微系统的多层技术

获取原文
获取原文并翻译 | 示例

摘要

A method to fabricate biocompatible polymer microfluidic systems with integrated electrical and fluid functionality has been established. The process flow utilizes laser ablation, microstenciling, and heat staking as the techniques to realize multi-layered polyimide based microsystems with microchannels, thru and embedded fluid / electrical vias, and metallic electrodes and contact pads. As an application of the fabrication technology, a six layer multifunctional cellular analysis system has been demonstrated. The electrophysiological analysis system contains fluid microchannel / via networks for cell positioning and chemical delivery as well as electrical detectors and electrodes for impedance spectroscopy and patch clamping studies. Multiple layers of 50.8μm thick Kapton~® sheets with double-sided polyimide adhesive layers were used as the primary material-of-construction. Microchannels with widths of 400μm as well as thru hole vias with 3.71 μm diameters (aspect ratios of over 12:1) were laser ablated through the polyimide sheets using an excimer laser and a CO_2 laser. Electrical traces and contact pads with features down to 20μm were defined on the flexible polyimide sheets using microstenciling. The patterned layers were bonded using heat staking at a temperature of 350℃, a pressure of 1.65MPa for 60 minutes. This multi-layer technology can be used to create microfluidic devices for many application areas requiring biocompatibility, relatively high temperature operation, or a flexible substrate material.
机译:已经建立了一种制造具有集成的电和流体功能的生物相容性聚合物微流体系统的方法。该工艺流程利用激光烧蚀,微模板化和热熔技术作为技术来实现基于多层聚酰亚胺的微系统,该系统具有微通道,直通和嵌入式流体/电导通孔以及金属电极和接触垫。作为制造技术的一种应用,已经证明了六层多功能细胞分析系统。电生理分析系统包含用于细胞定位和化学物质输送的流体微通道/通孔网络,以及用于阻抗谱和膜片钳位研究的电探测器和电极。多层50.8μm厚的带有双面聚酰亚胺胶粘剂层的Kapton®薄板被用作主要的结构材料。使用准分子激光器和CO_2激光器,通过聚酰亚胺片对宽度为400μm的微通道以及直径为3.71μm(纵横比超过12:1)的通孔进行激光烧蚀。使用微模板在柔性聚酰亚胺板上定义了特征不超过20μm的电气走线和接触垫。在350℃的温度,1.65MPa的压力下使用热粘合60分钟来将图案化的层粘合。这种多层技术可用于为需要生物相容性,相对高温操作或柔性基板材料的许多应用领域创建微流体设备。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号