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All-aqueous multiphase microfluidics

机译:全水多相微流控

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摘要

Immiscible aqueous phases, formed by dissolving incompatible solutes in water, have been used in green chemical synthesis, molecular extraction and mimicking of cellular cytoplasm. Recently, a microfluidic approach has been introduced to generate all-aqueous emulsions and jets based on these immiscible aqueous phases; due to their biocompatibility, these all-aqueous structures have shown great promises as templates for fabricating biomaterials. The physico-chemical nature of interfaces between two immiscible aqueous phases leads to unique interfacial properties, such as an ultra-low interfacial tension. Strategies to manipulate components and direct their assembly at these interfaces needs to be explored. In this paper, we review progress on the topic over the past few years, with a focus on the fabrication and stabilization of all-aqueous structures in a multiphase microfluidic platform. We also discuss future efforts needed from the perspectives of fluidic physics, materials engineering, and biology for fulfilling potential applications ranging from materials fabrication to biomedical engineering.
机译:通过将不相容的溶质溶解在水中形成的不混溶水相已用于绿色化学合成,分子提取和细胞质模拟。近来,基于这些不混溶的水相,已经引入了一种微流体方法来产生全水乳液和射流。由于它们的生物相容性,这些全水结构作为制造生物材料的模板具有广阔的前景。两个不混溶的水相之间的界面的物理化学性质导致了独特的界面特性,例如超低界面张力。需要探索用于操纵组件并将组件直接引导到这些接口的策略。在本文中,我们回顾了过去几年在该主题上的进展,重点是在多相微流体平台中全水结构的制造和稳定化。我们还将从流体物理学,材料工程和生物学的角度讨论实现从材料制造到生物医学工程的潜在应用所需的未来工作。

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