首页> 外文OA文献 >Laser micromachined wax-covered plastic paper as both sputter deposition shadow masks and deep-ultraviolet patterning masks for polymethylmethacrylate-based microfluidic systems
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Laser micromachined wax-covered plastic paper as both sputter deposition shadow masks and deep-ultraviolet patterning masks for polymethylmethacrylate-based microfluidic systems

机译:激光微加工覆盖蜡的塑料纸,可作为基于聚甲基丙烯酸甲酯的微流体系统的溅射沉积荫罩和深紫外图案化罩

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摘要

We report a technically innovative method of fabricating masks for both deep-ultraviolet (UV) patterning and metal sputtering on polymethylmethacrylate (PMMA) for microfluidic systems. We used a CO2 laser system to cut the required patterns on wax-covered plastic paper; the laser-patterned wax paper will either work as a mask for deep-UV patterning or as a mask for metal sputtering. A microfluidic device was also fabricated to demonstrate the feasibility of this method. The device has two layers: the first layer is a 1-mm thick PMMA substrate that was patterned by deep-UV exposure to create microchannels. The mask used in this process was the laser-cut wax paper. The second layer, also a 1-mm thick PMMA layer, was gold sputtered with patterned wax paper as the shadow mask. These two pieces of PMMA were then bonded to form microchannels with exposed electrodes. This process is a simple and rapid method for creating integrated microfluidic systems that do not require cleanroom facilities.
机译:我们报告了一种技术创新的方法,可制造用于深紫外(UV)图案化和在微流体系统的聚甲基丙烯酸甲酯(PMMA)上进行金属溅射的掩模。我们使用CO2激光系统在蜡覆盖的塑料纸上切割出所需的图案;激光图案蜡纸可作为用于深紫外线图案化的掩模或用作金属溅射的掩模。还制造了微流体装置以证明该方法的可行性。该设备有两层:第一层是1毫米厚的PMMA基板,该基板通过深紫外线曝光进行了图案化以形成微通道。在此过程中使用的面罩是激光切割蜡纸。第二层也是1mm厚的PMMA层,是用图案化的蜡纸作荫罩溅射的金。然后将这两块PMMA粘结在一起,形成带有裸露电极的微通道。该过程是用于创建不需要洁净室设施的集成微流控系统的简单快速方法。

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