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Characterization of Microchannel Replicability of Injection Molded Electrophoresis Microfluidic Chips

机译:注塑电泳微流控芯片的微通道可复制性表征

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摘要

Microfluidic chips have been widely applied in biochemical analysis, DNA sequencing, and disease diagnosis due to their advantages of miniaturization, low consumption, rapid analysis, and automation. Injection molded microfluidic chips have attracted great attention because of their short processing time, low cost, and mass production. The microchannel is the critical element of a microfluidic chip, and thus the microchannel replicability directly affects the performance of the microfluidic chip. In the current paper, a new method is proposed to evaluate the replicability of the microchannel profile via the root mean square value of the actual profile curve and the ideal profile curve of the microchannel. To investigate the effects of injection molding parameters (i.e., mold temperature, melting temperature, holding pressure, holding time, and injection rate) on microchannel replicability, a series of single-factor experiments were carried out. The results showed that, within the investigated experimental range, the increase of mold temperature, melt temperature, holding pressure, holding time, and injection rate could improve microchannel replicability accuracy. Specifically, the microchannels along the flow direction of the polymer melt were significantly affected by the mold temperature and melt temperature. Moreover, the replicability of the microchannel was influenced by the distance from the injection gate. The effect of microchannel replication on electrophoresis was demonstrated by a protein electrophoresis experiment.
机译:微流控芯片具有微型化,低消耗,快速分析和自动化的优点,已广泛应用于生化分析,DNA测序和疾病诊断。注射成型的微流控芯片因其处理时间短,成本低和批量生产而备受关注。微通道是微流体芯片的关键要素,因此微通道可复制性直接影响微流体芯片的性能。在当前的论文中,提出了一种通过实际轮廓曲线的均方根值和理想通道曲线的均方根值来评估微通道轮廓的可复制性的新方法。为了研究注塑参数(即模具温度,熔融温度,保压压力,保压时间和注塑速率)对微通道复制性的影响,进行了一系列单因素实验。结果表明,在研究的实验范围内,模具温度,熔体温度,保压压力,保压时间和注射速率的增加可以提高微通道的复制精度。具体地,沿着聚合物熔体的流动方向的微通道受到模具温度和熔体温度的显着影响。此外,微通道的可复制性受距进样口距离的影响。通过蛋白质电泳实验证明了微通道复制对电泳的影响。

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