A Generic Polycarbonate Based Microfluidic Tool to Study Crystal Nucleation in Microdroplets

Daniel Selzer, Burkard Spiegel, M. Kind
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引用次数: 8

Abstract

Crystal nucleation is important to control the product properties in industrial crystallization processes. To investigate crystallization phenomena, methods which rely on microscopic volumes have gained relevance over the last decade. Microfluidic devices are suitable for carrying out crystallization experiments based on a large set of individual droplets in the nanoliter range. In this work, we propose a simple method to manufacture such devices from polycarbonate as an alternative to conventional chips made of poly (dimethylsiloxane). The microfluidic device consists of two main functional parts: A T-junction for droplet generation and a section for storage and observation of up to 400 individual droplets. Using these manufactured devices, it is easy to produce and store highly monodisperse droplets of substances that require either a hydrophilic or hydrophobic surface of the microchannel. Since crystal nucleation is a stochastic process which depends on the sample volume, a reproducible droplet volume is of great importance for crystallization experiments. The versatile applicability of the manufactured devices is demonstrated for substances which are used in different crystallization applications, for example, solution crystallization (aqueous potassium nitrate solution) and melt crystallization (ethylene glycol distearate). Finally, we demonstrate that the manufactured microfluidic devices in our experimental setup can be used to conduct crystal nucleation measurements. Based on these measurements we discuss our results with respect to state-of-the-art nucleation models.
基于聚碳酸酯的通用微流体工具研究微液滴晶体成核
结晶成核是工业结晶过程中控制产品性能的重要环节。为了研究结晶现象,依赖于微观体积的方法在过去十年中获得了相关性。微流控装置适合进行基于纳升范围内的大量单个液滴的结晶实验。在这项工作中,我们提出了一种简单的方法,用聚碳酸酯制造这种器件,作为传统的聚二甲基硅氧烷芯片的替代品。微流控装置由两个主要功能部分组成:用于液滴产生的t型结和用于存储和观察多达400个单个液滴的部分。使用这些制造的设备,很容易产生和储存高度单分散的物质液滴,这些物质需要微通道的亲水性或疏水性表面。由于结晶成核是一个随机过程,它取决于样品体积,因此可重现的液滴体积对结晶实验非常重要。制造的设备的通用适用性证明了用于不同结晶应用的物质,例如,溶液结晶(硝酸钾水溶液)和熔融结晶(乙二醇二硬脂酸酯)。最后,我们证明了在我们的实验装置中制造的微流体装置可以用于进行晶体成核测量。根据这些测量结果,我们讨论了关于最先进的成核模型的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
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