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Synthesis of Carbon Nanotubes and Nanofibers on Silica and Cement Matrix Materials

机译:二氧化硅和水泥基材料上的碳纳米管和纳米纤维的合成

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摘要

In order to create strong composite materials, a good dispersion of carbon nanotubes (CNTs) and nanofibers (CNFs) in a matrix material must be obtained. We proposed a simple method of growing the desirable carbon nanomaterial directly on the surface of matrix particles. CNTs and CNFs were synthesised on the surface of model object, silica fume particles impregnated by iron salt, and directly on pristine cement particles, naturally containing iron oxide. Acetylene was successfully utilised as a carbon source in the temperature range from 550 to 750 C. 5–10 walled CNTs with diameters of 10–15 nm at 600 C and 12–20 nm at 750 C were synthesised on silica particles. In case of cement particles, mainly CNFs with a diameter of around 30 nm were grown. It was shown that high temperatures caused chemical and physical transformation of cement particles.
机译:为了产生坚固的复合材料,必须在基质材料中获得碳纳米管(CNT)和纳米纤维(CNF)的良好分散。我们提出了一种直接在基质颗粒表面上生长所需碳纳米材料的简单方法。 CNT和CNF分别在模型对象的表面,被铁盐浸渍的硅粉颗粒以及直接在天然包含氧化铁的原始水泥颗粒上合成。在550至750 C的温度范围内,乙炔已成功用作碳源。在二氧化硅颗粒上合成了5-10壁碳纳米管,在600 C时直径为10-15 nm,在750 C时为12-20 nm。对于水泥颗粒,主要生长直径约为30纳米的CNF。结果表明,高温引起水泥颗粒的化学和物理转变。

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