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Platelet-like catalyst design for high yield production of multi-walled carbon nanotubes by catalytic chemical vapour deposition

机译:通过催化化学气相沉积高产率生产多壁碳纳米管的片状催化剂设计

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摘要

We investigated the effect of catalyst design on the synthesis of multi-walled carbon nanotubes (MWCNTs) by chemical vapor deposition (CVD). A set of highly active supported sol–gel Co–Mo/MgO and Ni–Mo/MgO catalysts was prepared systematically modifying the calcination temperature. First, the evolution of catalysts’ crystallographic phases and their morphology were studied by X-ray diffraction (XRD), Raman spectroscopy, scanning electron (SEM) and transmission electron (TEM) microscopy. Second, the catalysts were used for the CVD growth of MWCNTs. The resulting materials were analysed by SEM and TEM, Raman and XRD to establish a relation between catalyst design and MWCNT yield. We show that our catalyst synthesis route leads to the formation of laminar non-porous catalyst systems, which at a calcination temperature of 800 °C stabilize in a crystallographic phase of MexMg1−xMoO4 (Me = Co or Ni). We give evidence that increased MWCNT yields of more than 3000 wt.% with respect to the catalysts are directly related to the aforementioned crystallographic phase. Finally, we propose a growth model based on the continuous exfoliation of platelet-like catalyst systems. This consistently explains the high catalytic activity towards MWCNT production using a non-porous catalyst. Our findings provide important insights for catalyst design strategies towards large-scale MWCNT production.
机译:我们研究了催化剂设计对通过化学气相沉积(CVD)合成多壁碳纳米管(MWCNT)的影响。系统地改变了煅烧温度,制备了一组高活性负载的溶胶-凝胶Co-Mo / MgO和Ni-Mo / MgO催化剂。首先,通过X射线衍射(XRD),拉曼光谱,扫描电子(SEM)和透射电子(TEM)显微镜研究了催化剂的结晶相及其形态的演变。其次,将催化剂用于MWCNT的CVD生长。通过SEM和TEM,拉曼和XRD对所得材料进行分析,以建立催化剂设计与MWCNT产率之间的关系。我们表明,我们的催化剂合成路线导致形成层状无孔催化剂体系,该体系在800°C的煅烧温度下稳定在MexMg1-xMoO4(Me = Co或Ni)的结晶相中。我们给出证据表明,相对于催化剂,提高的MWCNT产率超过3000重量%与上述结晶相直接相关。最后,我们提出了基于连续剥落的血小板状催化剂体系的生长模型。这一致地解释了使用无孔催化剂对MWCNT生产的高催化活性。我们的发现为大规模生产MWCNT的催化剂设计策略提供了重要的见识。

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