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分叉液滴在结晶表面的迁移。

Furcated droplet motility on crystalline surfaces.

机构信息

Department of Mechanical Engineering, The University of Hong Kong, Hong Kong SAR, China.

HKU-Zhejiang Institute of Research and Innovation (HKU-ZIRI), Hangzhou, Zhejiang, China.

出版信息

Nat Nanotechnol. 2021 Oct;16(10):1106-1112. doi: 10.1038/s41565-021-00945-w. Epub 2021 Jul 19.

Abstract

Directed liquid motion has been conventionally mediated by functionalizing chemical inhomogeneity or texturing topological anisotropy on target surfaces. Here we show the self-propulsion of droplets that furcated in well-defined directions on piezoelectric single crystals in the absence of any apparent asymmetry or external force. By selecting the crystal plane to interface with the droplets, the thermoelastic-piezoelectric interplay yields intricate electric potential profiles, enabling various forms of self-propulsion including unidirectional, bifurcated and trifurcated. This effect originates from an anisotropic crystalline structure that generates contrasting macroscopic liquid behaviours and is observed with cold/hot and volatile droplets. Intrinsically oriented liquid motions have broad applicability in processes ranging from soft matter engineering, autonomous material delivery and thermal management to biochemical analysis.

摘要

定向液体运动传统上是通过在目标表面功能化化学不均匀性或织构拓扑各向异性来介导的。在这里,我们展示了在没有任何明显不对称或外力的情况下,在压电单晶上自分叉的液滴的自推进。通过选择与液滴相互作用的晶体平面,热弹 - 压电相互作用产生复杂的电势分布,从而实现各种形式的自推进,包括单向、分叉和三分叉。这种效应源于各向异性的晶体结构,它产生了对比明显的宏观液体行为,并在冷/热和挥发性液滴中观察到。内在定向液体运动在从软物质工程、自主材料输送和热管理到生化分析等广泛的过程中具有广泛的适用性。

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