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Carbon nanotube catalysis by metal silicide: resolving inhibition versus growth

机译:金属硅化物催化碳纳米管:解决抑制与增长

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摘要

The catalytic activity of metal silicide for carbon nanotube (CNT) nucleation and growth is reported by systematically evaluating CNT synthesis on different metal silicide phases compared with pure metal catalysts. Using a combination of high-resolution microscopy, x-ray diffraction (XRD) and x-ray photoelectron spectroscopy (XPS), the influence of various pretreatment annealings on 1, 5 and 10 nm Ni and Co films sputter deposited on pristine Si(100) and SiO2 substrates has been explored in relation to their ability to catalyse CNT growth under a broad range of synthesis conditions. Under certain pretreatment and growth conditions metal silicide nanoparticles are as catalytically active as pure metal nanoparticles. The impact of these findings is significant. The considerable expertise on metal silicide already existing in silicon technology can be applied and extended for the integration of CNTs in electronics.
机译:通过系统地评估与纯金属催化剂相比在不同金属硅化物相上的CNT合成,报道了金属硅化物对碳纳米管(CNT)成核和生长的催化活性。使用高分辨率显微镜,X射线衍射(XRD)和X射线光电子能谱(XPS)的组合,各种预处理退火对溅射在原始Si(100)上沉积的1、5和10 nm Ni和Co膜的影响)和SiO2基材已被研究出在广泛的合成条件下催化CNT生长的能力。在某些预处理和生长条件下,金属硅化物纳米粒子与纯金属纳米粒子一样具有催化活性。这些发现的影响是巨大的。可以将硅技术中已经存在的有关金属硅化物的大量专业知识应用于并扩展为将CNT集成到电子产品中。

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