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首页> 外文期刊>BioChip journal >Fabrication of various cross-sectional shaped polymer microchannels by a simple PDMS mold based stamping method
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Fabrication of various cross-sectional shaped polymer microchannels by a simple PDMS mold based stamping method

机译:通过简单的基于PDMS模具的冲压方法制造各种截面形状的聚合物微通道

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We describe a facile and simple stamping method to fabricate various cross-sectional shaped microfluidic channels in transparent polymer materials such as polydimethylsiloxane (PDMS), poly (methyl -methacrylate) (PMMA), polystyrene (PS), and cyclic olefin copolymer (COC). First, microchannels of circular, rectangular, and triangular shape and different size were fabricated on a silicon wafer through an iso-tropic or anisotropic wet etching process, and the resultant microchannels on silicon wafers were transferred to PDMS through a replication technique. The produced PDMS with replicated convex microchannels served as a master mold. A variety of polymer solutions were pressed down against the PDMS master mold, and cured until the solvent was evaporated, generating circular, rectangular, and triangular shaped PDMS, PMMA, PS, and COC microchannels. The microchannels could be repeatedly prepared with a narrow standard deviation, thus demonstrating high reproducibility of the proposed method. The microchannel dimensions, shape, and surface roughness could be controlled by tuning the channel width of the mask, the wet etching direction, the etchant solution, and the concentration of KOH, respectively, when the microchannels were fabricated on a silicon wafer. This simple but efficient PDMS mold based stamping method can be widely used for fabricating different shaped microchannels on diverse polymer materials with high reproducibility, low cost, and high speed.
机译:我们描述了一种简便,简单的冲压方法来制造透明聚合物材料中的各种横截面形状的微流体通道,例如聚二甲基硅氧烷(PDMS),聚(甲基丙烯酸甲酯)(PMMA),聚苯乙烯(PS)和环烯烃共聚物(COC) 。首先,通过各向同性或各向异性湿法刻蚀在硅晶片上制造圆形,矩形和三角形形状以及不同尺寸的微通道,然后通过复制技术将硅晶片上所得的微通道转移到PDMS中。具有复制的凸微通道的生产的PDMS用作母模。将多种聚合物溶液压在PDMS主模具上,并固化直至溶剂蒸发,从而生成圆形,矩形和三角形的PDMS,PMMA,PS和COC微通道。可以以窄的标准偏差重复制备微通道,从而证明了所提出方法的高重现性。当在硅晶片上制造微通道时,可以分别通过调整掩模的通道宽度,湿蚀刻方向,蚀刻剂溶液和KOH的浓度来控制微通道的尺寸,形状和表面粗糙度。这种简单但有效的基于PDMS模具的冲压方法可广泛用于在多种聚合物材料上以高重现性,低成本和高速度制造不同形状的微通道。

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