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Synthesis and analysis of multi-walled carbon nanotubes/oxides hybrid materials for polymer composite applications

机译:用于聚合物复合材料的多壁碳纳米管/氧化物杂化材料的合成与分析

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Nanotubes-based nanocomposites to be used as polymer reinforcing/flame-retardant additives are synthesized by decomposition of isobutane at 600 °C. Catalytic chemical vapor deposition (CCVD) is carried out over 17 wt%Fe-catalysts supported on various oxides (Al_2O_3, MgO, CaO, SrO or BaO) reduced at 600 °C. Catalysts utilized and carbonaceous deposits obtained are systematically characterized by the use of several analysis techniques, in order to investigate the influence of catalyst specifics on reaction yield, selectivity and characteristics (crystallinity and purity) of the grown nanotubes. The results show that the support greatly influences the catalyst performance. The lack of metallic iron renders Fe/SrO- and Fe/BaO-catalysts inactive. Fe/Al_2O_3 catalysts exhibit the highest catalytic activity, but give rise to scarce selectivity and large metallic impurity contents. Contrarily, using Fe/MgO and Fe/CaO catalysts leads to lower yields, but allows reducing impurities and remarkably improving selectivity and nanotube crystallinity.
机译:通过在600°C下分解异丁烷来合成用作聚合物增强/阻燃添加剂的基于纳米管的纳米复合材料。催化化学气相沉积(CCVD)是在600℃下还原的各种氧化物(Al_2O_3,MgO,CaO,SrO或BaO)上负载的17 wt%Fe催化剂上进行的。为了研究催化剂的特性对生长的纳米管的反应收率,选择性和特性(结晶度和纯度)的影响,通过使用几种分析技术来系统地表征所使用的催化剂和所获得的碳质沉积物。结果表明,载体极大地影响了催化剂的性能。金属铁的缺乏使Fe / SrO-和Fe / BaO催化剂失活。 Fe / Al_2O_3催化剂具有最高的催化活性,但选择性不足且金属杂质含量高。相反,使用Fe / MgO和Fe / CaO催化剂可降低产率,但可以减少杂质并显着提高选择性和纳米管结晶度。

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