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超声辅助合成及磁性 PET/FeO、CA、AS 纳米复合材料的表征:形态和物理化学性能。

Sonochemical assisted synthesis and characterization of magnetic PET/FeO, CA, AS nanocomposites: Morphology and physiochemical properties.

机构信息

Organic Polymer Chemistry Research Laboratory, Department of Chemistry, Isfahan University of Technology, Isfahan 84156-83111, Islamic Republic of Iran; Research Institute for Nanotechnology and Advanced Materials, Isfahan University of Technology, Isfahan, 84156-83111, Islamic Republic of Iran.

Organic Polymer Chemistry Research Laboratory, Department of Chemistry, Isfahan University of Technology, Isfahan 84156-83111, Islamic Republic of Iran.

出版信息

Ultrason Sonochem. 2018 Jan;40(Pt A):611-618. doi: 10.1016/j.ultsonch.2017.08.006. Epub 2017 Aug 8.

Abstract

Ultrasonic-assisted synthesized iron oxide (FeO) nanoparticles (NP)s were modified with biodegradable citric acid (CA) and ascorbic acid (AS) [vitamin C] as capping agents. The ultrasonication (US) was applied for the synthesis and modification process as an easy, safe and fast method. Dissolution/reprecipitation procedure was offered to recycle poly(ethylene terephthalate) (PET) bottles and then, it has been focused on the preparation of PET nanocomposites (NC)s based on solution method via sonication agitation to disperse the FeO, CA, AS NPs in the organic polymeric surrounding substance. Magnetic PET NCs with modified FeO NPs loading (1, 3, and 5wt%) were fully characterized and the effect of NPs was examined by focusing on four aspects: Fourier transform infrared spectroscopy, X-ray diffraction, thermal stability studies, field emission scanning electron microscopy, transmission electron microscopy and energy dispersive X-ray analysis. Also, flame retardant behaviors of the NCs were investigated. Achieved morphology pictures displayed the presence of well dispersed magnetic NPs in the polymer matrix at nano-scale. In this work after recycling of PET waste bottles, it was aim to have magnetic PET due to its various potential applications such as wastewater treatment, catalysts, biomedicine and drug delivery system and electromagnetic devises. It was also intention to show easy, time saving and safe way (US method) to have magnetic PET which was achieved. From the results it can be concluded that one can readily have good dispersion of magnetic NPs in the PET matrix.

摘要

超声辅助合成的氧化铁 (FeO) 纳米粒子 (NP) 用可生物降解的柠檬酸 (CA) 和抗坏血酸 (AS) [维生素 C] 进行了修饰,作为封端剂。超声 (US) 被应用于合成和修饰过程,是一种简单、安全和快速的方法。溶解/沉淀程序被用来回收聚对苯二甲酸乙二醇酯 (PET) 瓶,然后,它专注于通过超声搅拌在有机聚合物周围物质中分散 FeO、CA 和 AS NP 来制备基于溶液法的 PET 纳米复合材料 (NC)。用改性 FeO NP 负载 (1、3 和 5wt%) 完全表征磁性 PET NC,并通过关注四个方面来检查 NP 的影响:傅里叶变换红外光谱、X 射线衍射、热稳定性研究、场发射扫描电子显微镜、透射电子显微镜和能量色散 X 射线分析。还研究了 NC 的阻燃性能。获得的形貌图片显示了纳米级聚合物基质中存在分散良好的磁性 NP。在这项工作中,在回收 PET 废瓶后,目的是获得具有各种潜在应用的磁性 PET,例如废水处理、催化剂、生物医学和药物输送系统以及电磁设备。还旨在展示一种简单、节省时间和安全的方法 (US 方法) 来获得磁性 PET,这已经实现了。从结果可以得出结论,人们可以很容易地在 PET 基质中获得良好的磁性 NP 分散。

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