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Mass-production Fabrication of Miniaturized Plastic Chip Devices for Biochemical Applications

机译:用于生化应用的小型化塑料芯片装置的批量生产制造

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A very important aspect in the next stage of genomic research will be the study of genetic diversity originating from an individual, for example, a single nucleotide polymorphism (SNP),. For this, the base-pair sequence needs to be determined quickly and easily; along with effectively gathering the proteins that are produced from the cell and depend on each genetic design. To meet these demands, the use of a miniaturized experimental apparatus formed on a chip is suitable as it gives a very small and well-controlled space to undertake precise analyses. This type of chip device needs to be disposable, inexpensive and of uniform quality, therefore many chips should be fabricated at the same time from a low cost chip material such as plastic. A mass-production fabrication process for such plastic chips was determined as follows. A thick coating type photoresist was spin-coated onto a 4-inch size Si wafer to 20 μm thickness and patterned by UV-lithography. Thick Au structures were embedded into the resist mold by microelectroplating. After removal of the resist, Au fine structures remained and were used as a metal mold for plastic casting. Plastic, polymethylmethaqrylate (PMMA), beads were dissolved in acetone and the polymer solution was cast into the metal mold under vacuum heating environment producing many identical plastic chips at a thickness of 1 mm. The size of the chemical reaction channel, one of the device's components, was 50μm in width and 20μm in depth.
机译:在基因组研究的下一阶段的一个非常重要的方面将是源自个体的遗传多样性的研究,例如单一核苷酸多态性(SNP)。为此,需要快速且容易地确定基对序列;随着有效地收集来自细胞产生的蛋白质并取决于每个遗传设计。为了满足这些要求,在芯片上形成的小型化实验装置适合,因为它给出了非常小且良好控制的空间以进行精确分析。这种类型的芯片装置需要进行一次性,廉价且质量均匀,因此应该在诸如塑料的低成本芯片材料的同时制造许多芯片。如下测定用于这种塑料芯片的批量生产制造方法。将厚的涂层型光致抗蚀剂旋涂到4英寸尺寸的Si晶片到20μm厚度上,并通过UV光刻图案。通过微电泡嵌入厚的Au结构。在去除抗蚀剂后,Au细结构保持并用作塑料铸造的金属模具。塑料,聚甲基甲基甲酸酯(PMMA),珠子溶解在丙酮中,将聚合物溶液在真空加热环境下浇铸到金属模具中,其厚度为1mm的许多相同的塑料碎片。化学反应通道的尺寸,其中一个装置的组分,宽度为50μm,深度为20μm。

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