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具有可控结构的超顺磁性磁铁矿/聚(苯乙烯 - 共 - 12 - 丙烯酰氧基 - 9 - 十八碳烯酸)纳米复合微球的制备

Fabrication of superparamagnetic magnetite/poly(styrene-co-12-acryloxy-9-octadecenoic acid) nanocomposite microspheres with controllable structure.

作者信息

Yang Song, Liu Huarong, Huang Haofeng, Zhang Zhicheng

机构信息

Department of Polymer Science and Engineering, CAS Key Laboratory of Soft Matter Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, PR China.

出版信息

J Colloid Interface Sci. 2009 Oct 15;338(2):584-90. doi: 10.1016/j.jcis.2009.07.007. Epub 2009 Jul 7.

Abstract

We herein report a novel and facile approach to the fabrication of the superparamagnetic magnetite/poly(styrene-co-12-acryloxy-9-octadecenoic acid) nanocomposite microspheres with controllable structure via gamma-ray radiation induced inverse emulsion polymerization under room temperature and at ambient pressure. 12-Acryloxy-9-octadecenoic acid (AOA, containing part of sodium salts Na-AOA) as a surfactant can also copolymerize with the styrene. It is interesting that just by changing the added amount of styrene, the magnetic hollow spheres with different wall thickness and various sizes of core, up to the magnetic solid spheres, can be obtained. The final products were thoroughly characterized by X-ray powder diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), transmission electron diffraction (TEM), field-emission scanning electron microscopy (FESEM), thermogravimetric analysis (TGA) which showed the formation of magnetite/poly(styrene-co-AOA) nanocomposite microspheres. Magnetic hysteresis loop measurements showed that the magnetic nanocomposite microspheres exhibited superparamagnetism, which should make them have potential applications in biotechnology and biomedicine. Furthermore, we also proposed a possible formation mechanism of these magnetic microspheres with different morphologies.

摘要

我们在此报告了一种新颖且简便的方法,可在室温和常压下通过γ射线辐射诱导的反相乳液聚合制备具有可控结构的超顺磁性磁铁矿/聚(苯乙烯 - 共 - 12 - 丙烯酰氧基 - 9 - 十八碳烯酸)纳米复合微球。12 - 丙烯酰氧基 - 9 - 十八碳烯酸(AOA,含有部分钠盐Na - AOA)作为表面活性剂也能与苯乙烯共聚。有趣的是,仅通过改变苯乙烯的添加量,就可以获得具有不同壁厚和各种尺寸核心的磁性空心球,直至磁性实心球。最终产物通过X射线粉末衍射(XRD)、傅里叶变换红外光谱(FTIR)、透射电子衍射(TEM)、场发射扫描电子显微镜(FESEM)、热重分析(TGA)进行了全面表征,结果表明形成了磁铁矿/聚(苯乙烯 - 共 - AOA)纳米复合微球。磁滞回线测量表明,磁性纳米复合微球表现出超顺磁性,这使其在生物技术和生物医学领域具有潜在应用。此外,我们还提出了这些具有不同形态的磁性微球的可能形成机制。

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