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Rotational dynamics of confined C60 from near-infrared Raman studies under high pressure

机译:高压下近红外拉曼研究中受限C60的旋转动力学

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摘要

Peapods present a model system for studying the properties of dimensionally constrained crystal structures, whose dynamical properties are very important. We have recently studied the rotational dynamics of C60 molecules confined inside single walled carbon nanotube (SWNT) by analyzing the intermediate frequency mode lattice vibrations using near-infrared Raman spectroscopy. The rotation of C60 was tuned to a known state by applying high pressure, at which condition C60 first forms dimers at low pressure and then forms a single-chain, nonrotating, polymer structure at high pressure. In the latter state the molecules form chains with a 2-fold symmetry. We propose that the C60 molecules in SWNT exhibit an unusual type of ratcheted rotation due to the interaction between C60 and SWNT in the “hexagon orientation,” and the characteristic vibrations of ratcheted rotation becomes more obvious with decreasing temperature.
机译:Peapods提供了一个模型系统,用于研究尺寸受约束的晶体结构的特性,其动力学特性非常重要。最近,我们通过使用近红外拉曼光谱分析中频模式晶格振动,研究了局限在单壁碳纳米管(SWNT)中的C60分子的旋转动力学。通过施加高压将C60的旋转调节到已知状态,在这种情况下,C60首先在低压下形成二聚体,然后在高压下形成单链,不旋转的聚合物结构。在后一种状态下,分子形成具有2倍对称性的链。我们认为,SWNT中的C60分子由于在“六边形”中C60和SWNT之间的相互作用而表现出异常的棘轮旋转,并且随着温度的降低,棘轮旋转的特征振动变得更加明显。

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