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Development of Microdroplet Generation Method for Organic Solvents Used in Chemical Synthesis

机译:化学合成中使用的有机溶剂的微滴发电方法的研制

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摘要

Recently, chemical operations with microfluidic devices, especially droplet-based operations, have attracted considerable attention because they can provide an isolated small-volume reaction field. However, analysis of these operations has been limited mostly to aqueous-phase reactions in water droplets due to device material restrictions. In this study, we have successfully demonstrated droplet formation of five common organic solvents frequently used in chemical synthesis by using a simple silicon/glass-based microfluidic device. When an immiscible liquid with surfactant was used as the continuous phase, the organic solvent formed droplets similar to water-in-oil droplets in the device. In contrast to conventional microfluidic devices composed of resins, which are susceptible to swelling in organic solvents, the developed microfluidic device did not undergo swelling owing to the high chemical resistance of the constituent materials. Therefore, the device has potential applications for various chemical reactions involving organic solvents. Furthermore, this droplet generation device enabled control of droplet size by adjusting the liquid flow rate. The droplet generation method proposed in this work will contribute to the study of organic reactions in microdroplets and will be useful for evaluating scaling effects in various chemical reactions.
机译:最近,具有微流体装置的化学操作,特别是基于液滴的操作,引起了相当大的关注,因为它们可以提供孤立的小体积反应场。然而,由于装置材料限制,对这些操作的分析主要限于水滴中的水滴水液相反应。在这项研究中,我们通过使用简单的硅/玻璃基微流体装置成功地证明了经常用于化学合成的五种常见有机溶剂的液滴形成。当使用具有表面活性剂的不混溶液体作为连续相时,有机溶剂形成类似于装置中的油水滴的液滴。与易受有机溶剂中溶胀的树脂组成的常规微流体装置相比,发育的微流体装置由于构成材料的高耐化学性而没有经历膨胀。因此,该装置具有用于涉及有机溶剂的各种化学反应的潜在应用。此外,该液滴产生装置通过调节液体流速来控制液滴尺寸。本作作品中提出的液滴产生方法将有助于研究微量滴电池中的有机反应,并且可用于评估各种化学反应中的缩放效应。

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