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液珠在液体中。

Liquid Marbles in Liquid.

机构信息

State Key Laboratory of Organic Inorganic Composites, Beijing University of Chemical Technology, Beijing, 100029, China.

Department of Mechanical Engineering, City University of Hong Kong, Hong Kong, 999077, China.

出版信息

Small. 2020 Sep;16(37):e2002802. doi: 10.1002/smll.202002802. Epub 2020 Aug 14.

Abstract

Traditional liquid marbles (LMs), liquid droplets encapsulated by hydrophobic particles at the liquid-gas interface, are restricted by their short lifetime and low heat transfer efficiency. Herein, a new paradigm for LMs immersed in various liquid mediums with massive enhanced heat transfer and spatial recognition is designed; without compromising the structural integrity, the lifetime of the liquid marbles in liquid (LMIL) is extended by ≈1000 times compared to classical LMs in air or naked droplets in organic reagents. The LMIL shows promising reverse structural re-configurability while under external stimuli and maintaining their functionality for a very long period of time (≈weeks). These superior behaviors are further exploited as a miniature reactor with prolonged lifetimes and excellent temperature control, combined with its feasible operation, new opportunities will open up in the advanced chemical and biomedical engineering fields. It is also shown that LMIL can be applied in methylene blue degradation and 3D in-vitro yeast cell cultures. These findings have important implications for real-world use of LMs, with a number of applications in cell culture technology, lab-in-a-drop, polymerization, encapsulation, formulation, and drug delivery.

摘要

传统的液滴(LMs),即在液体-气体界面处被疏水性颗粒包裹的液滴,受到其短寿命和低传热效率的限制。在此,设计了一种浸入各种液体介质中的 LMs 的新范例,在不破坏结构完整性的情况下,与空气或有机试剂中裸露的液滴中的经典 LMs 相比,液体包裹液滴(LMIL)的寿命延长了约 1000 倍。LMIL 在外部刺激下表现出有希望的反向结构可重构性,同时保持其功能很长一段时间(≈数周)。这些优异的性能进一步被用作具有延长寿命和出色温度控制的微型反应器,结合其可行的操作,在先进的化学和生物医学工程领域将开辟新的机会。研究还表明,LMIL 可应用于亚甲基蓝降解和 3D 体外酵母细胞培养。这些发现对于 LMs 的实际应用具有重要意义,在细胞培养技术、液滴实验室、聚合、封装、配方和药物输送等领域具有广泛的应用前景。

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