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基于纳米颗粒的水性铁磁流体中无磁性复合哑铃的磁场取向组装

Magnetic field aligned assembly of nonmagnetic composite dumbbells in nanoparticle-based aqueous ferrofluid.

作者信息

Takahashi Hayato, Nagao Daisuke, Watanabe Kanako, Ishii Haruyuki, Konno Mikio

机构信息

Department of Chemical Engineering, Tohoku University, 6-6-07 Aoba, Aramaki-aza Aoba-ku, Sendai, 980-8579 Japan.

出版信息

Langmuir. 2015 May 26;31(20):5590-5. doi: 10.1021/acs.langmuir.5b00737. Epub 2015 May 11.

Abstract

Monodisperse, nonmagnetic, asymmetrical composite dumbbells in a suspension of magnetic nanoparticles (ferrofluid) were aligned by application of an external magnetic field to the ferrofluid. The asymmetrical composite dumbbells were prepared by two-step soap-free emulsion polymerization consisting of the first polymerization to coat spherical silica cores with cross-linked poly(methyl methacrylate) (PMMA) shell and the second polymerization to protrude a polystyrene (PSt) lobe from the core-shell particles. A chain structure of nonmagnetic dumbbells oriented to the applied magnetic field was observed at nanoparticle content of 2.0 vol % and field strengths higher than 1.0 mT. A similar chain structure of the dumbbells was observed under application of alternating electric field at strengths higher than 50 V/mm. Parallel and orthogonally combined applications of the electric and magnetic fields were also conducted to examine independence of the electric and magnetic applications as operational factors in the dumbbell assembling. Dumbbell chains stiffer than those in a single application of external field were formed in the parallel combined application of electric and magnetic fields. The orthogonal combination of the different applied fields could form a magnetically aligned chain structure of the nonmagnetic dumbbells oriented to the electric field. The present work experimentally indicated that the employment of inverse magnetorheological effect for nonmagnetic, anisotropic particles can be a useful method for the simultaneous controls over the orientation and the positon of anisotropic particles in their assembling.

摘要

通过对磁性纳米颗粒(铁磁流体)悬浮液施加外部磁场,使单分散、非磁性、不对称的复合哑铃在其中排列。不对称复合哑铃通过两步无皂乳液聚合制备,第一步聚合用交联聚甲基丙烯酸甲酯(PMMA)壳包覆球形二氧化硅核,第二步聚合从核壳颗粒中突出聚苯乙烯(PSt)叶。在纳米颗粒含量为2.0体积%且场强高于1.0 mT时,观察到非磁性哑铃沿施加磁场方向排列形成链状结构。在电场强度高于50 V/mm时施加交变电场,也观察到了类似的哑铃链状结构。还进行了电场和磁场的平行和正交组合应用,以研究电场和磁场作为哑铃组装操作因素的独立性。在电场和磁场的平行组合应用中,形成了比单一施加外场时更硬的哑铃链。不同施加场的正交组合可以形成非磁性哑铃沿电场方向排列的磁排列链状结构。目前的工作通过实验表明,对非磁性各向异性颗粒采用逆磁流变效应可以成为在组装过程中同时控制各向异性颗粒取向和位置的有用方法。

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