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磁场诱导超顺磁性钴纳米粒子在基底和液-气界面上的组装。

Magnetic Field-Induced Assembly of Superparamagnetic Cobalt Nanoparticles on Substrates and at Liquid-Air Interface.

机构信息

Fraunhofer Institute for Applied Polymer Research IAP , Geiselbergstr. 69 , 14476 Potsdam-Golm , Germany.

Lehrstuhl für Polymermaterialien und Polymertechnologie , Universität Potsdam , 14476 Potsdam-Golm , Germany.

出版信息

Langmuir. 2018 Nov 20;34(46):13993-14002. doi: 10.1021/acs.langmuir.8b02673. Epub 2018 Nov 9.

Abstract

Superparamagnetic cobalt nanoparticles (Co NPs) are an interesting material for self-assembly processes because of their magnetic properties. We investigated the magnetic field-induced assembly of superparamagnetic cobalt nanoparticles and compared three different approaches, namely, the assembly on solid substrates, at water-air, and ethylene glycol-air interfaces. Oleic acid- and trioctylphosphine oxide-coated Co NPs were synthesized via a thermolysis of cobalt carbonyl and dispersed into either hexane or toluene. The Co NP dispersion was dropped onto different substrates (e.g., transmission electron microscopy (TEM) grid, silicon wafer) and onto liquid surfaces. Transmission electron microscopy (TEM), scanning force microscopy, optical microscopy, as well as scanning electron microscopy showed that superparamagnetic Co NPs assembled into one-dimensional chains in an external magnetic field. By varying the concentration of the Co NP dispersion (1-5 mg/mL) and the strength of the magnetic field (4-54 mT), the morphology of the chains changed. Short, thin, and flexible chain structures were obtained at low NP concentration and low strength of magnetic field, whereas they became long, thick and straight when the NP concentration and the magnetic field strength increased. In comparison, the assembly of Co NPs from hexane dispersion at ethylene glycol-air interface showed the most regular and homogeneous alignment, since a more efficient spreading could be achieved on ethylene glycol than on water and solid substrates.

摘要

超顺磁钴纳米粒子(Co NPs)由于其磁性而成为自组装过程中的一种有趣材料。我们研究了超顺磁钴纳米粒子在外磁场作用下的组装,并比较了三种不同的方法,即在固体基底上、水-空气和乙二醇-空气界面上的组装。油酸和三辛基氧化膦包覆的 Co NPs 通过热解二羰基钴合成,并分散在正己烷或甲苯中。Co NP 分散体滴在不同的基底(例如,透射电子显微镜(TEM)网格、硅片)和液体表面上。透射电子显微镜(TEM)、扫描力显微镜、光学显微镜以及扫描电子显微镜显示,超顺磁 Co NPs 在外部磁场中组装成一维链。通过改变 Co NP 分散体的浓度(1-5mg/mL)和磁场强度(4-54mT),链的形态发生了变化。在 NP 浓度低和磁场强度低的情况下,得到了短、薄且灵活的链结构,而当 NP 浓度和磁场强度增加时,它们变得长、厚且直。相比之下,在乙二醇-空气界面上从正己烷分散体中组装 Co NPs 显示出最规则和均匀的排列,因为与水和固体基底相比,在乙二醇上可以实现更有效的铺展。

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