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OMIS: The Open Millifluidic Inquiry System for small scale chemical synthesis and analysis

机译:OMIS:用于小规模化学合成和分析的开放式毫流查询系统

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With the continued establishment of hacker-spaces and fab-labs hosted in academic libraries, there is an increase in the availability of resources for designing scientific instrumentation in the undergraduate curriculum. Many available designs, however, may be too complex to fabricate in teaching environments. Presented here is OMIS, the Open Millifluidic Inquiry System, which is a platform for performing small-scale chemical synthesis and analysis. OMIS consists of a 3D printed syringe pump, control hardware based upon the Arduino microcontroller and 3D printed reaction vessels. The OMIS syringe pump utilizes a low-power stepper motor which simplifies the instrument construction and allows for power to be supplied from batteries or the USB port of a computer. The simple design of OMIS allows for the instrument to be fabricated in one day, including the time to 3D print components. The OMIS syringe pump is able to deliver fluids at rates between 60 and 300?μL/min, depending on syringe size, with a reproducibility of 3%. Several applications of OMIS are presented, including a demonstration of laminar flow in a 3D printed millifluidic chip, implementation of a low-volume flow-cell cuvette insert and the synthesis of magnetite nanoparticles.
机译:随着在大学图书馆中托管的黑客空间和工厂实验室的不断建立,用于本科课程中设计科学仪器的资源的可用性不断增加。但是,许多可用的设计可能太复杂而无法在教学环境中制造。这里展示的是开放式毫流查询系统OMIS,它是进行小规模化学合成和分析的平台。 OMIS由3D打印注射器泵,基于Arduino微控制器的控制硬件和3D打印反应容器组成。 OMIS注射泵使用低功率步进电机,简化了仪器的结构,并允许通过电池或计算机的USB端口供电。 OMIS的简单设计可在一天内完成仪器的制造,包括3D打印组件的时间。 OMIS注射泵能够以60到300µL / min的速度输送液体,具体取决于注射器的大小,重复性为3%。介绍了OMIS的几种应用,包括在3D打印的微流控芯片中的层流演示,小体积流动池比色皿插入物的实现以及磁铁矿纳米颗粒的合成。

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