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由电场组装和驱动的离子型双面液滴

Ionic Janus Liquid Droplets Assembled and Propelled by Electric Field.

作者信息

Sindoro Melinda, Granick Steve

机构信息

School of Materials Science & Engineering, Nanyang Technological University, 50 Nanyang Ave, Singapore, 639798, Singapore.

IBS Center for Soft and Living Matter, Institute of Basic Science, Ulsan, 44919, Republic of Korea.

出版信息

Angew Chem Int Ed Engl. 2018 Dec 17;57(51):16773-16776. doi: 10.1002/anie.201810862. Epub 2018 Nov 21.

Abstract

Traditional Janus particle approaches to produce active motion are based on using solid particles, but it is interesting to consider liquid droplets instead, because for solid particles, the self-assembly of synthetic active matter requires moving objects to sit in a near-planar 2D geometry. Emulsions, cross-linked polymers, and porous materials have been proposed for 3D self-assembly but with limitations to propel them. It is now demonstrated that Janus liquid droplets can be used as building block in an active propulsion system. Using an ionic liquid motif, the droplet system can be tuned from core-shell to Janus and multipatches, using facile surfactant-based methods. The approach was stimulated by the success of electro-hydrodynamic flow produced by an alternating electric field to produce motion of colloidal particles; its usefulness to also propel ionic liquids is demonstrated.

摘要

传统的制备主动运动的Janus粒子方法基于使用固体颗粒,但考虑使用液滴会很有意思,因为对于固体颗粒,合成活性物质的自组装要求移动物体处于近平面的二维几何结构中。乳液、交联聚合物和多孔材料已被提出用于三维自组装,但在推动它们方面存在局限性。现在已经证明,Janus液滴可以用作主动推进系统中的构建块。利用离子液体基序,使用基于表面活性剂的简便方法,液滴系统可以从核壳结构调整为Janus结构和多斑结构。交变电场产生的电流体动力学流动成功地使胶体颗粒产生运动,激发了这种方法;该方法对推动离子液体的有效性也得到了证明。

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