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Fabrication of electroosmotic flow pump on polymethylmethacrylate substrate using hot embossing

机译:用热压花纹在聚甲基甲基丙烯酸酯基材上的制造

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摘要

Improved fabrication processes of a micro electroosmotic flow pump using hot embossing are described. The microchannels in the micropump were fabricated by hot embossing on a polymethylmethacrylate (PMMA) substrate. A silicon micromachined mold was pressed into the PMMA substrate at a temperature of 145 °C to form microchannel patterns on the substrate. The depth and width of the microchannels were 50 μm and 100 μm, respectively. Aluminum electrodes were deposited using thermal vacuum deposition. A UV ozone treatment was performed to improve adhesion between the PMMA substrate and a PMMA capping layer. This UV ozone treatment enhanced adhesion and resulted in the reduction of the adhesion temperature as low as 70 °C, and nearly no deformation of the microchannels was observed. As a result, the electroosmotic flow pump exhibited the flow rate of 0.5 μl/min when a voltage of 50 V was given between the electrodes separated 8 mm each other.
机译:描述了使用热压浮雕的微型电渗流泵的改进的制造过程。微泵中的微通道通过热压花在聚甲基丙烯酸甲酯(PMMA)底物上制造。在145℃的温度下将硅微机械模具压入PMMA基板中,在基板上形成微通道图案。微通道的深度和宽度分别为50μm和100μm。使用热真空沉积沉积铝电极。进行UV臭氧处理以改善PMMA基板和PMMA覆盖层之间的粘附性。该UV臭氧处理增强了粘附性并导致粘合温度降低至低至70℃,几乎没有观察到微通道的变形。结果,当在电极在彼此分离8mm​​的电极之间给出50V的电压时,电渗流泵表现出0.5μl/ min的流速。

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