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使用改进的同轴喷丝头通过静电纺丝制备磁荧光双功能柔性同轴纳米带

Fabrication of Magnetic-Fluorescent Bifunctional Flexible Coaxial Nanobelts by Electrospinning Using a Modified Coaxial Spinneret.

作者信息

Ma Qianli, Wang Jinxian, Dong Xiangting, Yu Wensheng, Liu Guixia

机构信息

Key Laboratory of Applied Chemistry and Nanotechnology, Universities of Jilin Province, Changchun University of Science and Technology, Changchun 130022 (P.R. China), Fax: (+86) 0431-85383815.

出版信息

Chempluschem. 2014 Feb;79(2):290-297. doi: 10.1002/cplu.201300262. Epub 2013 Nov 5.

Abstract

A new magnetic-fluorescent bifunctional coaxial nanobelt structure has been successfully fabricated by specially designed coaxial-spinneret electrospinning technology. As an example, terbium complexes [Tb(BA) (phen)] (BA=benzoic acid, phen=1,10-phenanthroline) and ferroferric oxide nanoparticles were incorporated into polymethyl methacrylate (PMMA) and electrospun into coaxial nanobelts with Fe O /PMMA as the core and [Tb(BA) (phen)]/PMMA as the shell. The morphology and properties of the final products have been investigated in detail by X-ray diffractometry (XRD), scanning electron microscopy (SEM), energy-dispersive spectrometry (EDS), biological microscopy (BM), vibrating sample magnetometry (VSM), and fluorescence spectroscopy. The results show that the [Fe O /PMMA]@[[Tb(BA) (phen)]/PMMA] magnetic-fluorescent bifunctional coaxial nanobelts possess superior magnetic and fluorescent properties owing to their special nanostructures. The magnetic-fluorescent bifunctional coaxial nanobelts provide higher performance than Fe O /[Tb(BA) (phen)]/PMMA composite nanobelts. This new type of magnetic-fluorescent bifunctional coaxial nanobelt has the potential to be used in novel nano-biolabel materials, drug delivery materials, and future nanodevices owing to their excellent magnetic-fluorescent properties, flexibility, and insolubility.

摘要

通过特殊设计的同轴喷丝头静电纺丝技术,成功制备了一种新型的磁荧光双功能同轴纳米带结构。例如,将铽配合物[Tb(BA) (phen)](BA = 苯甲酸,phen = 1,10 - 菲咯啉)和四氧化三铁纳米颗粒掺入聚甲基丙烯酸甲酯(PMMA)中,并静电纺丝成以Fe O /PMMA为核、[Tb(BA) (phen)]/PMMA为壳的同轴纳米带。通过X射线衍射仪(XRD)、扫描电子显微镜(SEM)、能谱仪(EDS)、生物显微镜(BM)、振动样品磁强计(VSM)和荧光光谱仪对最终产物的形貌和性能进行了详细研究。结果表明,[Fe O /PMMA]@[[Tb(BA) (phen)]/PMMA]磁荧光双功能同轴纳米带由于其特殊的纳米结构而具有优异的磁性能和荧光性能。磁荧光双功能同轴纳米带比Fe O /[Tb(BA) (phen)]/PMMA复合纳米带具有更高的性能。这种新型的磁荧光双功能同轴纳米带因其优异的磁荧光性能、柔韧性和不溶性,有潜力用于新型纳米生物标记材料、药物递送材料和未来的纳米器件。

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