Magnetic Liquid Metals Manipulated in the Three-Dimensional Free Space.

ACS Appl Mater Interfaces

Department of Biomedical Engineering, School of Medicine , Tsinghua University, Beijing 100084 , China.

Published: February 2019

AI Article Synopsis

  • The study introduces a magnetic liquid metal droplet (MLMD) that can stretch both horizontally and vertically in free space, made from a combination of liquid metals, iron particles, and electrolytes.
  • This droplet exhibits unique properties such as reversible and long-lasting stretching, with its strength attributed to a surface oxide layer, enabling it to act as an intelligent scalable conductor for electrical connections in 3D space.
  • The MLMD mimics the movement of upright walking amphibians, allowing for precise and contactless control via magnetic fields, suggesting future applications in dynamic soft robotics and multi-freedom actuation.

Article Abstract

In the present study, a magnetic liquid metal droplet (MLMD), which can be stretched in large scales both horizontally and vertically in the free space, is introduced. This MLMD is fabricated based on a multimaterial system including liquid metals, iron particles, and electrolytes. Such remarkable stretching capacity is reversible, long-lasting, and can be repeated for multiple times. The seemingly contrary properties, the good stretchability and the mechanic strength for three-dimensional (3D) stretch, should owe to the surface oxide over the MLMD. On the basis of the 3D stretching ability of the MLMD, an intelligent scalable conductor was achieved, which can make electrical connections at various directions in the 3D free space. Moreover, the vertically stretched MLMD can move horizontally with its half body in the solution and the other half in the air, which resembles the nature of an upright walking amphibian. All the behaviors can be precisely, conveniently, and contactlessly controlled by the magnetic field provided by permanent magnets. With all the appealing properties, this MLMD presents a fundamental and promising platform for the liquid metals to further develop the multi-freedom actuation in free space and eventually lead to the dynamically reconfigurable intelligent and biomimetic soft robots in the future.

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Source
http://dx.doi.org/10.1021/acsami.8b22699DOI Listing

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