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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Aerosol formation of Sea-Urchin-like nanostructures of carbon nanotubes on bimetallic nanocomposite particles
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Aerosol formation of Sea-Urchin-like nanostructures of carbon nanotubes on bimetallic nanocomposite particles

机译:在双金属纳米复合颗粒上气溶胶状形成碳纳米管的海胆状纳米结构

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摘要

With the advantage of continuous production of pure carbon nanotubes (CNTs), a new simple aerosol process for the formation of CNTs was developed. A combination of conventional spray pyrolysis and thermal chemical vapor deposition enabled the formation unusual sea-urchin-like carbon nanostructures composed of multi-walled CNTs and metal composite nanoparticles. The CNTs formed were relatively untangled and uniform with a diameter of less than ~10 nm. The key to the formation of CNTs in this way was to create a substrate particle containing both a catalytic and non-catalytic component, which prevented coking. The density of the CNTs grown on the spherical metal nanoparticles could be controlled by perturbing the density of the metal catalysts (Fe) in the host non-catalytic metal particle matrix (Al). Mobility size measurement was identified as a useful technique to real-time characterization of either the catalytic formation of thin carbon layer or CNTs on the surface of the metal aerosol. These materials have shown unique properties in enhancing the thermal conductivity of fluids. Other potential advantages are that the as-produced material can be manipulated easily without the concern of high mobility of conventional nanowires, and then subsequently released at the desired time in an unagglomerated state.
机译:利用连续生产纯碳纳米管(CNT)的优势,开发了一种用于形成CNT的新的简单气溶胶工艺。常规喷雾热解和热化学气相沉积的结合使得能够形成由多壁CNT和金属复合纳米粒子组成的异常海胆状碳纳米结构。形成的CNT相对不缠结且直径小于10 nm。以这种方式形成CNT的关键是创造一种既包含催化成分又包含非催化成分的基质颗粒,从而防止了结焦。可以通过扰动主体非催化金属颗粒基质(Al)中金属催化剂(Fe)的密度来控制在球形金属纳米颗粒上生长的CNT的密度。流动性尺寸测量被认为是实时表征金属气溶胶表面上薄碳层或CNT催化形成的有用技术。这些材料在增强流体的导热性方面显示出独特的性能。其他潜在的优势是,所生产的材料可以轻松操作,而无需担心常规纳米线的高迁移率,然后在所需的时间以未团聚的状态释放出来。

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