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具有可调形状且表现出静电响应性能的非球形液态金属微粒的生成。

Generation of Nonspherical Liquid Metal Microparticles with Tunable Shapes Exhibiting an Electrostatic-Responsive Performance.

作者信息

Wang Shiyu, Zhu Zhiqiang, Ma Canzhen, Qiao Ran, Yang Chaoyu, Xu Ronald X, Si Ting

机构信息

Department of Precision Machinery and Precision Instrumentation, University of Science and Technology of China, Hefei, Anhui 230026, China.

Key Laboratory of Precision Scientific Instrumentation of Anhui Higher Education Institutes, University of Science and Technology of China, Hefei 230026, China.

出版信息

ACS Appl Mater Interfaces. 2021 Apr 14;13(14):16677-16687. doi: 10.1021/acsami.1c01026. Epub 2021 Apr 5.

Abstract

Nonspherical liquid metal microparticles (NLMs) show extraordinary potential in various applications due to their multifunctional and structural advantages. To one-step-produce shaped NLMs with high efficiency, high controllability, and free of template, a facile microfluidic strategy named rotary flow shearing (RFS) is reported. A high-speed viscous shearing flow is provided by two counter-rotating rotors in the carrier fluid, inducing continuous pinch-off of liquid metal flowing from a capillary tube positioned in face of the slit between two rotors. The real-time oxidation realizes the rapid solidification of the pinching neck and the liquid metal surface during the RFS process, resulting in massive NLMs. Different from other microfluidic methods, the RFS enables tunable shapes of NLMs, especially for working materials at high viscosities. The collected NLMs exhibit special electrostatic-responsive performances including translation, rotation, reciprocation, and lining up under the manipulation of an external electric field. Such NLMs can be promisingly used for the construction of novel micromotors and soft electronics.

摘要

非球形液态金属微粒(NLMs)因其多功能性和结构优势在各种应用中展现出非凡潜力。为了高效、高可控且无模板地一步制备成型的NLMs,本文报道了一种名为旋转流剪切(RFS)的简便微流控策略。在载液中,两个反向旋转的转子提供高速粘性剪切流,促使从位于两个转子之间狭缝对面的毛细管中流出的液态金属连续 pinch-off。实时氧化实现了RFS过程中收缩颈部和液态金属表面的快速凝固,从而产生大量NLMs。与其他微流控方法不同,RFS能够实现NLMs形状的可调,特别是对于高粘度的工作材料。收集到的NLMs表现出特殊的静电响应性能,包括在外部电场的操纵下平移、旋转、往复运动和排列。这种NLMs有望用于构建新型微电机和柔性电子器件。

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