首页> 外文期刊>The Journal of Supercritical Fluids >Synthesis of magnetic carbon nanotubes: Functionalisation of carbon nanotubes with nickel/sulphur nanoparticles via self-assembly in near-critical acetone
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Synthesis of magnetic carbon nanotubes: Functionalisation of carbon nanotubes with nickel/sulphur nanoparticles via self-assembly in near-critical acetone

机译:磁性碳纳米管的合成:通过近临界丙酮中的自组装功能,用镍/硫纳米粒子对碳纳米管进行功能化

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Magnetic carbon nanotubes (CNTs); i.e., magnetic materials-filling or -coating CNTs, have recently been paid a lot of attention to particularly in the bio-medical field aiming to develop high resolution nano bio-imaging media, nano hyperthermia materials, nano drug delivery vehicles and nano-surgical robots. Fluids under their near-critical conditions, which are called near-critical fluids, are often used in chemical science and engineering; e.g., for the extraction of chemicals, and can also be utilised for an efficient synthesis of nanomaterials. Here, we functionalise CNTs with carbon-coating nickel/sulphur nanoparticles via self-assembly by mixing CNTs, nickelocene and sulphur with acetone and setting the solvent under sub-critical or super-critical conditions. We find that each nanoparticle is composed of a mixture of NiS and Ni3S2 covered with a carbon shell and that the size of the nanoparticle changes depending on the fluid temperature; i.e., the average diameter of the core nanoparticle increases with an increase in the synthetic temperature. Each CNT is also covered with a carbon layer. The CNTs immobilised with the carbon-coating nanoparticles show soft ferromagnetic characteristics. The magnetisation is also increased with an increase in the synthetic temperature. The present methodology may well be applied to the synthesis of other magnetic carbon nanomaterials such as magnetic fullerenes and graphenes, by dispersing fullerenes and graphenes in near-critical fluids, in which metallocenes and sulphur are dissolved.
机译:磁性碳纳米管(CNT);磁性材料填充或涂覆碳纳米管,特别是在生物医学领域,尤其是在旨在开发高分辨率纳米生物成像介质,纳米热疗材料,纳米药物递送载体和纳米外科手术的生物医学领域,已引起了广泛关注机器人。处于近临界条件下的流体(称为近临界流体)通常用于化学科学和工程领域。例如,用于化学药品的提取,并且还可以用于纳米材料的有效合成。在这里,我们通过将碳纳米管,镍茂和硫与丙酮混合并将溶剂设置在亚临界或超临界条件下,通过自组装功能将碳纳米管/碳纳米管/碳纳米管/碳纳米管/碳纳米管自组装。我们发现,每个纳米颗粒都是由覆盖有碳壳的NiS和Ni3S2的混合物组成,并且纳米颗粒的大小随流体温度的变化而变化。即,核纳米粒子的平均直径随着合成温度的升高而增加。每个CNT也覆盖有碳层。固定有碳涂层纳米颗粒的CNT显示出软铁磁特性。磁化强度也随着合成温度的升高而增加。通过将富勒烯和石墨烯分散在其中溶解有茂金属和硫的近临界流体中,本方法可以很好地应用于合成其他磁性碳纳米材料,例如磁性富勒烯和石墨烯。

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