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High yield synthesis of helical carbon nanotubes catalyzed by porous precursor with terrace morphology

机译:平台形多孔前驱体高产率合成螺旋碳纳米管

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摘要

Superfine and uniformly dispersed catalyst precursor was obtained through a novel precipitation/sol-gel/reduction technique, which had multi-scale multi-layered porous structures with large surface areas. Helical carbon nanotubes (HCNTs) with good purity were then synthesized through chemical vapor deposition (CVD) by acetylene decomposition over the as-obtained precursor. The yield of the HCNTs was nearly three times of the highest value ever reported. The high yield and good quality of the HCNTs was attributed to the peculiar structures of the precursor that could decompose into catalyst with large surface area and high activity. Furthermore, the structures and catalytic efficiencies of the catalyst precursors prepared through other two different approaches were also investigated to reveal the relationship between the structures of the precursor and their capability differences in catalyzing the HCNTs growth. (C) 2014 Elsevier ay. All rights reserved.
机译:通过一种新颖的沉淀/溶胶-凝胶/还原技术,获得了具有超细且均匀分散的催化剂前体,该技术具有大面积的多尺度多层多孔结构。然后,通过乙炔在所获得的前体上进行乙炔分解,通过化学气相沉积(CVD)合成出具有良好纯度的螺旋状碳纳米管(HCNT)。 HCNT的产量几乎是有史以来最高值的三倍。 HCNT的高产率和良好质量归因于前体的特殊结构,其可以分解成具有大表面积和高活性的催化剂。此外,还研究了通过其他两种不同方法制备的催化剂前体的结构和催化效率,以揭示前体的结构与其催化HCNTs生长的能力差异之间的关系。 (C)2014爱思唯尔。版权所有。

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