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Assignment of the Internal Vibrational Modes of C70 by Inelastic Neutron Scattering Spectroscopy and Periodic-DFT

机译:非弹性中子散射光谱和周期性DFT对C70内部振动模式的分配

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摘要

The fullerene C70 may be considered as the shortest possible nanotube capped by a hemisphere of C60 at each end. Vibrational spectroscopy is a key tool in characterising fullerenes, and C70 has been studied several times and spectral assignments proposed. Unfortunately, many of the modes are either forbidden or have very low infrared or Raman intensity, even if allowed. Inelastic neutron scattering (INS) spectroscopy is not subject to selection rules, and all the modes are allowed. We have obtained a new INS spectrum from a large sample recorded at the highest resolution available. An advantage of INS spectroscopy is that it is straightforward to calculate the spectral intensity from a model. We demonstrate that all previous assignments are incorrect in at least some respects and propose a new assignment based on periodic density functional theory (DFT) that successfully reproduces the INS, infrared, and Raman spectra.
机译:富勒烯C70可以被认为是在每个末端被C60的半球覆盖的最短的纳米管。振动光谱法是表征富勒烯的关键工具,对C70进行了数次研究并提出了光谱分配方法。不幸的是,即使允许,许多模式还是被禁止或具有非常低的红外或拉曼强度。非弹性中子散射(INS)光谱不受选择规则的约束,并且允许所有模式。我们已经从以最高可用分辨率记录的大样本中获得了新的INS光谱。 INS光谱学的一个优点是可以直接从模型计算光谱强度。我们证明至少在某些方面,所有先前的分配都是不正确的,并基于周期密度泛函理论(DFT)提出了一个新的分配,该分配成功地再现了INS,红外和拉曼光谱。

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