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Impact of silicon nanocrystal oxidation on the nonmetallic growth of carbon nanotubes

机译:硅纳米晶氧化对碳纳米管非金属生长的影响

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摘要

Carbon nanotube (CNT) growth has been demonstrated recently using a number of nonmetallic semiconducting and metal oxide nanoparticles, opening up pathways for direct CNT synthesis from a number of more desirable templates without the need for metallic catalysts. However, CNT growth mechanisms using these nonconventional catalysts has been shown to largely differ and reamins a challenging synthesis route. In this contribution we show CNT growth from partially oxidized silicon nanocrystals (Si NCs) that exhibit quantum confinement effects using a microwave plasma enhanced chemical vapor deposition (PECVD) method. On the basis of solvent and a postsynthesis frgamentation process, we show that oxidation of our Si NCs can be easily controlled. We determine experimentally and explain with theoretical simulations that the Si NCs morphology together with a necessary shell oxide of ∼1 nm is vital to allow for the nonmetallic growth of CNTs. On the basis of chemical analysis post-CNT-growth, we give insight into possible mechanisms for CNT nucleation and growth from our partially oxidized Si NCs. This contribution is of significant importance to the improvement of nonmetallic catalysts for CNT growth and the development of Si NC/CNT interfaces.
机译:碳纳米管(CNT)的生长最近已使用多种非金属半导体和金属氧化物纳米颗粒进行了证明,这为从许多更理想的模板直接进行CNT合成开辟了途径,而无需金属催化剂。但是,使用这些非常规催化剂的CNT生长机理已显示出很大差异,并限制了具有挑战性的合成路线。在此贡献中,我们显示了使用微波等离子体增强化学气相沉积(PECVD)方法显示出量子限制效应的部分氧化硅纳米晶体(Si NCs)产生的CNT生长。基于溶剂和合成后的碎裂过程,我们表明Si NCs的氧化可轻松控制。我们通过实验确定并通过理论模拟来解释,Si NCs形态以及必要的〜1 nm壳氧化物对于允许CNTs非金属生长至关重要。在碳纳米管生长后的化学分析的基础上,我们深入了解了部分氧化的硅纳米管对碳纳米管成核和生长的可能机制。该贡献对于用于CNT生长的非金属催化剂的改进和Si NC / CNT界面的开发具有重要意义。

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