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Preparation and characterization of Fe3O4 magnetic nanoparticles modified by perfluoropolyether carboxylic acid surfactant

机译:全氟聚醚羧酸表面活性剂改性的Fe3O4磁性纳米粒子的制备与表征

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Conventional surfactants-modified Fe3O4 magnetic nanoparticles (MNPs) are not satisfying in special areas, especially in corrosive and extreme temperature conditions. In this study, bare Fe3O4 MNPs were synthesized by co-precipitation without protective gas in atmosphere, and then modified by perfluor-polyether carboxylic acid surfactant (PCAS). Both the bare and the modified Fe3O4 MNPs were characterized. According to the results of characterization, the modified Fe3O4 MNPs are globular shaped and monodisperse whose average particle size decreased from 30 similar to 40 nm to 11 nm and in narrow distribution. In addition, characteristic peaks of PCAS and bare Fe304 both appear in FT-IR spectrum of modified Fe3O4 which suggest that Fe3O4 MNPs have been coated by PCAS. The surface coating won't alter Fe3O4 crystal morphology or superparamagnetism. However, it can slightly reduce saturation magnetization from 74.684 emu/g to 55.392 emu/g. The modified layer will be completely destroyed at near 380 degrees C. The mass ratio of the modified layer to bare Fe3O4 core is close to 39:53 according to thermal analysis. In summary, these results collectively showed that PCAS was successfully decorated at the surface of Fe3O4 MNPs and the performance of modified Fe3O4 MNPs has been greatly improved. (C) 2014 Elsevier B.V. All rights reserved.
机译:传统的表面活性剂改性的Fe3O4磁性纳米颗粒(MNP)在特殊区域中并不令人满意,特别是在腐蚀性和极端温度条件下。在这项研究中,在没有保护气体的情况下通过共沉淀法合成了Fe3O4 MNP裸露,然后用全氟聚醚羧酸表面活性剂(PCAS)进行了改性。裸露的和改性的Fe3O4 MNPs均经过表征。根据表征结果,改性的Fe3O4 MNP为球形,呈单分散状,其平均粒径从30到40 nm减小到11 nm,分布狭窄。另外,改性Fe3O4的FT-IR谱图中均出现了PCAS和Fe304的特征峰,表明Fe3O4 MNP被PCAS包覆。表面涂层不会改变Fe3O4的晶体形态或超顺磁性。但是,它可以将饱和磁化强度从74.684 emu / g稍微降低到55.392 emu / g。改性层将在380摄氏度附近被完全破坏。根据热分析,改性层与Fe3O4裸芯的质量比接近39:53。总之,这些结果共同表明,PCAS已成功地装饰在Fe3O4 MNPs的表面,并且改性Fe3O4 MNPs的性能有了很大的提高。 (C)2014 Elsevier B.V.保留所有权利。

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