材料科学
富勒烯
拉曼光谱
纳米管
分子间力
哑铃
分子动力学
化学物理
结晶学
碳纳米管
分子
高压
纳米技术
计算化学
热力学
化学
物理
医学
物理疗法
有机化学
光学
作者
Yan Wang,Mingguang Yao,Xin Hua,Fei Jin,Zhen Yao,Hua Yang,Ziyang Liu,Quanjun Li,Ran Liu,Bo Liu,Linhai Jiang,Bingbing Liu
标识
DOI:10.1088/0256-307x/39/5/056101
摘要
The hybridization of fullerene and nanotube structures in newly isolated C 90 with the D 5 h symmetric group ( D 5 h (1)-C 90 ) provides an ideal model as a mediating allotrope of nanocarbon from zero-dimensional (0D) fullerene to one-dimensional nanotube. Raman and infrared spectroscopy combined with classical molecular dynamics simulation were used to investigate the structural evolution of D 5 h (1)-C 90 at ambient and high pressure up to 35.1 GPa. Interestingly, the high-pressure transformations of D 5 h (1)-C 90 exhibit the features of both fullerene and nanotube. At around 2.5 GPa, the D 5 h (1)-C 90 molecule in the crystal undergoes an orientational transition to a restricted rotation. At 6.6 GPa, the tubular hexagonal part occurs and transforms into a dumbbell-like structure at higher pressure. The material starts to amorphize above 13.9 GPa, and the transition is reversible until the pressure exceeds 25 GPa. The amorphization is probably correlated with both the intermolecular bonding and the morphology change. Our results enrich our understanding of structural changes in nanocarbon from 0D to 1D.
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