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On the synthesis and magnetic properties of multiwall carbon nanotube-superparamagnetic iron oxide nanoparticle nanocomposites

机译:多壁碳纳米管-超顺磁性氧化铁纳米粒子纳米复合材料的合成及磁性

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摘要

Multiwall carbon nanotubes (MWCNTs) possessing an average inner diameter of 150 nm were synthesized by template assisted chemical vapor deposition over an alumina template. Aqueous ferrofluid based on superparamagnetic iron oxide nanoparticles (SPIONs) was prepared by a controlled co-precipitation technique, and this ferrofluid was used to fill the MWCNTs by nanocapillarity. The filling of nanotubes with iron oxide nanoparticles was confirmed by electron microscopy. Selected area electron diffraction indicated the presence of iron oxide and graphitic carbon from MWCNTs. The magnetic phase transition during cooling of the MWCNT-SPION composite was investigated by low temperature magnetization studies and zero field cooled (ZFC) and field cooled experiments. The ZFC curve exhibited a blocking at similar to 110 K. A peculiar ferromagnetic ordering exhibited by the MWCNT-SPION composite above room temperature is because of the ferromagnetic interaction emanating from the clustering of superparamagnetic particles in the constrained volume of an MWCNT. This kind of MWCNT-SPION composite can be envisaged as a good agent for various biomedical applications.
机译:通过在氧化铝模板上进行模板辅助化学气相沉积来合成平均内径为150 nm的多壁碳纳米管(MWCNT)。通过控制共沉淀技术制备了基于超顺磁性氧化铁纳米粒子(SPIONs)的水性铁磁流体,该铁磁流体用于通过纳米毛细管填充MWCNT。通过电子显微镜确认了用氧化铁纳米颗粒填充纳米管。选定区域的电子衍射表明存在来自多壁碳纳米管的氧化铁和石墨碳。通过低温磁化研究以及零场冷却(ZFC)和场冷却实验研究了MWCNT-SPION复合材料冷却过程中的磁性相变。 ZFC曲线在接近110 K时表现出阻塞。在室温以上,MWCNT-SPION复合材料表现出特殊的铁磁有序性是因为在MWCNT的受约束体积中,超顺磁性粒子的聚集产生了铁磁相互作用。可以将这种MWCNT-SPION复合材料作为各种生物医学应用的良好试剂。

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