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磁性与导电液态金属凝胶

Magnetic and Conductive Liquid Metal Gels.

作者信息

Merhebi Salma, Mayyas Mohannad, Abbasi Roozbeh, Christoe Michael J, Han Jialuo, Tang Jianbo, Rahim Md Arifur, Yang Jiong, Tan Thiam Teck, Chu Dewei, Zhang Jin, Li Sean, Wang Chun H, Kalantar-Zadeh Kourosh, Allioux Francois-Marie

机构信息

School of Chemical Engineering, University of New South Wales (UNSW), Sydney, New South Wales 2052, Australia.

School of Materials Science and Engineering, UNSW, Sydney, New South Wales 2052, Australia.

出版信息

ACS Appl Mater Interfaces. 2020 Apr 29;12(17):20119-20128. doi: 10.1021/acsami.0c03166. Epub 2020 Apr 15.

Abstract

Liquid metals are fast becoming a new class of universal and frictionless additives for the development of multifunctional soft and flexible materials. Herein, nanodroplets of eutectic gallium-indium alloy, which is liquid at room temperature, were used as a platform for the formulation of electrically conductive and magnetically responsive gels with the incorporation of FeO nanoparticles. The nanoadditives were prepared within a water-based solution of polyvinyl alcohol. A borax cross-linking reaction was then performed to yield multifunctional flexible and self-healing gels. The physicochemical properties and changes in the nanoadditives at each step of the gel preparation method were characterized. Oxidation and complexation reactions between the liquid metal and iron oxide nanoadditives were observed. A mixture of nanosized functional magnetic FeO/FeO and In-Fe oxide complexes was found to enable the magnetic susceptibility of the gels. The mechanical and self-healing properties of the gels were assessed, and finally, this flexible and multifunctional material was used as an electronic switch via remote magnetic actuation. The developed conductive and magnetic gels demonstrate great potential for the design of soft electronic systems.

摘要

液态金属正迅速成为一类新型的通用且无摩擦的添加剂,用于开发多功能柔软且灵活的材料。在此,室温下呈液态的共晶镓铟合金纳米液滴被用作一个平台,通过掺入FeO纳米颗粒来制备导电且具有磁响应性的凝胶。纳米添加剂是在聚乙烯醇的水基溶液中制备的。然后进行硼砂交联反应,以得到多功能柔性且自愈合的凝胶。对凝胶制备方法各步骤中纳米添加剂的物理化学性质及变化进行了表征。观察到液态金属与氧化铁纳米添加剂之间的氧化和络合反应。发现纳米级功能性磁性FeO/FeO和铟 - 铁氧化物络合物的混合物能够使凝胶具有磁化率。评估了凝胶的机械性能和自愈合性能,最后,这种柔性多功能材料通过远程磁驱动用作电子开关。所开发的导电且磁性凝胶在软电子系统设计方面展现出巨大潜力。

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