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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Structural stability and transformation of aligned C-60 and C-70 fullerenes in double-wall and triple-wall carbon nanotube-peapods
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Structural stability and transformation of aligned C-60 and C-70 fullerenes in double-wall and triple-wall carbon nanotube-peapods

机译:双壁和三壁碳纳米管-豆荚中对齐的C-60和C-70富勒烯的结构稳定性和转变

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摘要

Clear imaging for stable phases of encapsulated fullerenes has been easily obtained only in double-wall carbon nanotubes (DWNTs) and triple-wall carbon nanotubes (TWNTs) due to the high structural stability of the host nanotubes and the encapsulated fullerenes, suggesting that investigation on DWNT- or TWNT-peapods might be a powerful approach to investigate the structures and properties of peapods. At nanotube diameters less than 1.40 nm, the stress forces between the nanotubes and the fullerenes have resulted in deformation of the encapsulated fullerenes and regular arrangement of C-70 molecules in the longitudinal orientation. At a diameter of 1.47 nm, free rotation of C-70 in different orientations is observed. For a zigzag phase of C-60 fullerenes in SWNTs, DWNTs, and TWNTs, the interaction between nanotubes and fullerenes can be expressed as attractive interactions or stress forces at different diameters of host nanotubes. Furthermore, fullerene-nanotube interactions in DWNT-peapods of different diameters are discussed by observing the material after 1200 degrees C heat treatment.
机译:由于主体纳米管和包封的富勒烯的高结构稳定性,仅在双壁碳纳米管(DWNT)和三层碳纳米管(TWNTs)中很容易获得对于包封的富勒烯稳定相的清晰成像。 DWNT或TWNT豌豆可能是研究豌豆结构和特性的有力方法。在小于1.40nm的纳米管直径下,纳米管和富勒烯之间的应力导致包封的富勒烯变形并且C-70分子在纵向取向上规则排列。在直径1.47 nm处,观察到C-70在不同方向上的自由旋转。对于SWNT,DWNT和TWNT中C-60富勒烯的Z字形相,纳米管和富勒烯之间的相互作用可以表示为不同直径的宿主纳米管之间的吸引相互作用或应力。此外,通过观察1200℃热处理后的材料,讨论了不同直径的DWNT-豆荚中的富勒烯-纳米管相互作用。

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