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Formation of surface nanodroplets of viscous liquids by solvent exchange

机译:溶剂交换形成粘性液体表面纳米液体的形成

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摘要

Surface nanodroplets are essential units for many compartmentalised processes from catalysis, liquid-liquid reactions, crystallization, wetting and more. Current techniques for producing submicron droplets are mainly based on top-down approaches, which are increasingly limited as scale reduces. Herein, solvent exchange is demonstrated as a simple solution-based approach for the formation of surface nanodroplets with intermediate and extremely high viscosity (1 000 000 cSt). By solvent exchange, the viscous droplet liquid dissolves in a good solvent that is then displaced by a poor solvent to yield surface droplets for the oversaturaion pulse at the mixing front. Within controlled flow conditions, the geometry of droplets of low and intermediate viscosity liquids can be tailored on the nano and microscale by controlling the flow rate. Meanwhile for extremely viscous liquids, the droplet size is shown to be dependent on the liquid temperature. This work demonstrates that solvent exchange offers a versatile tool for the formation of droplets with a wide range of viscosity.
机译:表面纳米液体是许多催化,液体反应,结晶,润湿等许多隔间化工艺的基本单位。用于制造亚微米液滴的当前技术主要基于自上而下的方法,随着尺度减少,这越来越受限制。在此,证明溶剂交换作为具有中间体和极高粘度(1000 000cst)的表面纳米辊的基于溶液的基于溶液的方法。通过溶剂交换,粘性液滴液体溶解在良好的溶剂中,然后通过差的溶剂移位,以屈服于混合前部的过浴脉冲的表面液滴。在受控流动条件下,通过控制流速,可以在纳米和微观上定制低和中间粘度液体的几何形状。同时对于极其粘性液体,显示液滴尺寸依赖于液体温度。这项工作表明,溶剂交换提供了一种多功能工具,用于形成具有广泛粘度的液滴。

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