Facile Synthesis of Silicone Oil-Based Ferrofluid: Toward Smart Materials and Soft Robots

IF 16 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Leilei Chen, Hengao Yu, Jilan Yang, Jinzhuo Shi, Chun-he Li, Zijie Qu and Wendong Wang*, 
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引用次数: 0

Abstract

Ferrofluids are stable colloidal dispersions of magnetic nanoparticles in carrier liquids. Their combination of magnetic and fluidic characteristics not only inspires fundamental inquiries into forms and functions of matter but also enables diverse applications ranging from sealants and coolants in mechanical devices to active components in smart materials and soft robots. Spurred by such fundamental and applied interests, a growing need for easy-to-synthesize, high-quality ferrofluid exists. Here, we report the facile synthesis and comprehensive characterization of a silicone oil-based ferrofluid that displays the characteristic surface instability of high-quality ferrofluids and demonstrate its functions in smart interfacial materials and soft robots. Silicone’s chemical immiscibility with polar solvents and its biological inertness, when coupled with magnetic responsiveness and fluidic deformability, enable the manipulation of solid particles, gas bubbles, simple and complex liquids, as well as micro-organisms. We envision that the silicone oil-based ferrofluid will find applications in diverse areas, including magnetic digital microfluidics, multifunctional materials, and small-scale robotics.

Abstract Image

硅油基铁磁流体的简易合成:迈向智能材料和软体机器人
铁磁流体是磁性纳米颗粒在载体液体中的稳定胶体分散体。它们的磁性和流体特性的结合不仅激发了对物质形式和功能的基本探索,而且还实现了从机械设备中的密封剂和冷却剂到智能材料和软机器人中的主动元件的各种应用。在这些基础和应用兴趣的刺激下,对易于合成的高质量铁磁流体的需求日益增长。在这里,我们报告了硅油基铁磁流体的简单合成和综合表征,显示了高质量铁磁流体的表面不稳定性特征,并展示了其在智能界面材料和软机器人中的功能。有机硅与极性溶剂的化学不混溶性及其生物惰性,再加上磁响应性和流体可变形性,使固体颗粒,气泡,简单和复杂的液体以及微生物的操纵成为可能。我们设想硅油基铁磁流体将在不同的领域找到应用,包括磁性数字微流体,多功能材料和小型机器人。
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来源期刊
ACS Nano
ACS Nano 工程技术-材料科学:综合
CiteScore
26.00
自引率
4.10%
发文量
1627
审稿时长
1.7 months
期刊介绍: ACS Nano, published monthly, serves as an international forum for comprehensive articles on nanoscience and nanotechnology research at the intersections of chemistry, biology, materials science, physics, and engineering. The journal fosters communication among scientists in these communities, facilitating collaboration, new research opportunities, and advancements through discoveries. ACS Nano covers synthesis, assembly, characterization, theory, and simulation of nanostructures, nanobiotechnology, nanofabrication, methods and tools for nanoscience and nanotechnology, and self- and directed-assembly. Alongside original research articles, it offers thorough reviews, perspectives on cutting-edge research, and discussions envisioning the future of nanoscience and nanotechnology.
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