首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >A side-by-side capillaries-based microfluidic system for synthesizing size- and morphology-controlled magnetic anisotropy janus beads
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A side-by-side capillaries-based microfluidic system for synthesizing size- and morphology-controlled magnetic anisotropy janus beads

机译:基于并列毛细管的微流体系统,用于合成大小和形态受控的磁各向异性janus磁珠

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摘要

With two segments having different chemical or physical properties, janus particles have gained widespread attention in recent years. A fast assembly-disassembly side-by-side capillaries-based microfluidic system was designed for rapid and easy generation of janus particles with magnetic anisotropic properties. Two immiscible organic phases, among which one contained magnetic particles, were emulsified by a stream of an aqueous phase into janus droplets formed at capillaries' tips and transported after breakup by the continuous aqueous phase in an outlet tubing. Then upon downstream UV irradiation, droplets were hardened into solid janus microparticles containing magnetic particles in one of their two segments. By changing the flow rates of organic and aqueous phases, not only the overall size of janus particles but also the relative volume of the two hemispherical segments could be controlled. Generated janus particles were proved having magnetic anisotropy by their forced-driven rotation in an external magnetic field, which makes them potentially interesting materials in chemical and biomedical applications. (C) 2014 The Society of Powder Technology Japan. Published by Elsevier B. V. and The Society of Powder Technology Japan. All rights reserved.
机译:近年来,随着具有不同化学或物理性质的两个片段,janus颗粒获得了广泛的关注。设计了一种基于组装和拆卸的并排毛细管的快速微流控系统,可快速,轻松地生成具有磁性各向异性特性的剑齿颗粒。两种不混溶的有机相(其中一个包含磁性颗粒)被水相流乳化成在毛细管尖端形成的滴,并在连续水相破碎后在出口管中运输。然后在下游的紫外线照射下,液滴被硬化成固态的贾纳斯微粒,在两个段之一中包含磁性颗粒。通过改变有机相和水相的流速,不仅可以控制回肠颗粒的整体大小,而且可以控制两个半球形部分的相对体积。通过在外部磁场中强制驱动旋转,证明生成的janus颗粒具有磁各向异性,这使其成为化学和生物医学应用中潜在的有趣材料。 (C)2014日本粉末技术学会。由Elsevier B. V.和日本粉末技术学会出版。版权所有。

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