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聚丙烯酸低聚物稳定的超顺磁性铁磁流体的制备与性质

Preparation and properties of poly(acrylic acid) oligomer stabilized superparamagnetic ferrofluid.

作者信息

Lin Chia-Lung, Lee Chia-Fen, Chiu Wen-Yen

机构信息

Department of Materials Science and Engineering, National Taiwan University, Taipei, Taiwan, Republic of China.

出版信息

J Colloid Interface Sci. 2005 Nov 15;291(2):411-20. doi: 10.1016/j.jcis.2005.05.023. Epub 2005 Jul 11.

Abstract

Ferrofluids, which are stable dispersions of magnetic particles, behave as liquids that have strong magnetic properties. Nanoparticles of magnetite with a mean diameter of 10-15 nm, which are in the range of superparamagnetism, are usually prepared by the traditional method of co-precipitation from ferrous and ferric electrolyte solution. When diluted, the ferrofluid dispersions are not stable if anionic or cationic surfactants are used as the stabilizer. This work presents an efficient way to prepare a stable aqueous nanomagnetite dispersion. A stable ferrofluid containing Fe3O4 nanoparticles was synthesized via co-precipitation in the presence of poly(acrylic acid) oligomer. The mechanism, microstructure, and properties of the ferrofluid were investigated. The results indicate that the PAA oligomers promoted the nucleation and inhibited the growth of the magnetic iron oxide, and the average diameter of each individual Fe3O4 particle was smaller than 10 nm. In addition, the PAA oligomers provided both electrostatic and steric repulsion against particle aggregation, and the stability of dispersions could be controlled by adjusting the pH value of solution. A small amount of Fe2O3 was found in the nanoparticles but the superparamagnetic behavior of the nanoparticles was not affected.

摘要

铁磁流体是磁性颗粒的稳定分散体,其表现为具有强磁性的液体。平均直径在10 - 15纳米范围内的磁铁矿纳米颗粒处于超顺磁性范围内,通常通过从亚铁和铁电解质溶液中共沉淀的传统方法制备。当稀释时,如果使用阴离子或阳离子表面活性剂作为稳定剂,铁磁流体分散体是不稳定的。这项工作提出了一种制备稳定的水性纳米磁铁矿分散体的有效方法。通过在聚丙烯酸低聚物存在下共沉淀合成了含有Fe3O4纳米颗粒的稳定铁磁流体。研究了铁磁流体的机理、微观结构和性能。结果表明,聚丙烯酸低聚物促进了成核并抑制了磁性氧化铁的生长,并且每个单独的Fe3O4颗粒的平均直径小于10纳米。此外,聚丙烯酸低聚物提供了针对颗粒聚集的静电和空间排斥力,并且分散体的稳定性可以通过调节溶液的pH值来控制。在纳米颗粒中发现了少量的Fe2O3,但纳米颗粒的超顺磁性行为没有受到影响。

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