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Microstructure and microscopic deposition mechanism of twist-shaped carbon nanocoils based on the observation of helical nanoparticles on the growth tips

机译:基于生长尖端螺旋纳米粒子观察的扭曲形碳纳米线圈的微观结构和微观沉积机理

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摘要

Carbon nanocoils possessing a twisting form were prepared from an Fe-based alloy (SUS410) catalyst, the crystallographic properties of the catalyst surface, which was present on the growth tip, were examined, and a novel growth mechanism of the nanocoils is presented. Single-helix twisted carbon nanocoils with a coil diameter of 300-400 nm were obtained at 700-800 deg C with a yield of 60 percent and a purity of nearly 100 percent. The catalyst structure observed on the growth tip was a Fe_5C_2 (monoclinic) or Fe_7C_3 (orthorhombic) single crystal, in which some of the Fe atoms were substituted by Cr. Carbon nanoparticles with a helical structure were observed on the surface of catalyst particle. It is considered that the carbon nanoparticles are a helical carbon supply source. That is, the catalyst particle supplies microscopic carbon nanoparticles by helical deposition patterns on the catalyst surface to form macroscopic helical patterns of carbon nanocoils.
机译:用Fe基合金(SUS410)催化剂制备了具有扭曲形态的碳纳米线圈,研究了生长尖端存在的催化剂表面的晶体学性质,提出了新型的纳米线圈生长机理。在700-800摄氏度下获得了线圈直径为300-400 nm的单螺旋扭曲碳纳米线圈,产率为60%,纯度接近100%。在生长尖端观察到的催化剂结构是Fe_5C_2(单斜晶)或Fe_7C_3(斜方晶)单晶,其中一些Fe原子被Cr取代。在催化剂颗粒的表面上观察到具有螺旋结构的碳纳米颗粒。认为碳纳米颗粒是螺旋碳供应源。即,催化剂颗粒通过在催化剂表面上的螺旋沉积图案供应微观的碳纳米颗粒,以形成碳纳米线圈的宏观的螺旋图案。

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