碳纳米管
立方氧化锆
碳纳米管负载催化剂
化学工程
X射线光电子能谱
气凝胶
碳纤维
无定形碳
成核
催化作用
材料科学
热解
纳米技术
碳化物衍生碳
纳米颗粒
化学气相沉积
化学
碳纳米纤维
无定形固体
复合材料
有机化学
复合数
陶瓷
工程类
作者
Stephen A. Steiner,Theodore F. Baumann,Bernhard C. Bayer,Raoul Blume,Marcus A. Worsley,Warren J. MoberlyChan,Elisabeth L. Shaw,Robert Schlögl,A. John Hart,Stephan Hofmann,Brian L. Wardle
摘要
We report that nanoparticulate zirconia (ZrO(2)) catalyzes both growth of single-wall and multiwall carbon nanotubes (CNTs) by thermal chemical vapor deposition (CVD) and graphitization of solid amorphous carbon. We observe that silica-, silicon nitride-, and alumina-supported zirconia on silicon nucleates single- and multiwall carbon nanotubes upon exposure to hydrocarbons at moderate temperatures (750 degrees C). High-pressure, time-resolved X-ray photoelectron spectroscopy (XPS) of these substrates during carbon nanotube nucleation and growth shows that the zirconia catalyst neither reduces to a metal nor forms a carbide. Point-localized energy-dispersive X-ray spectroscopy (EDAX) using scanning transmission electron microscopy (STEM) confirms catalyst nanoparticles attached to CNTs are zirconia. We also observe that carbon aerogels prepared through pyrolysis of a Zr(IV)-containing resorcinol-formaldehyde polymer aerogel precursor at 800 degrees C contain fullerenic cage structures absent in undoped carbon aerogels. Zirconia nanoparticles embedded in these carbon aerogels are further observed to act as nucleation sites for multiwall carbon nanotube growth upon exposure to hydrocarbons at CVD growth temperatures. Our study unambiguously demonstrates that a nonmetallic catalyst can catalyze CNT growth by thermal CVD while remaining in an oxidized state and provides new insight into the interactions between nanoparticulate metal oxides and carbon at elevated temperatures.
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