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被困于C60内部的分子的振动-转动光谱学

Vibration-rotation spectroscopy of molecules trapped inside C60.

作者信息

Cross R James

机构信息

Department of Chemistry, Yale University, New Haven, Connecticut 06520, USA.

出版信息

J Phys Chem A. 2008 Aug 7;112(31):7152-6. doi: 10.1021/jp802544p. Epub 2008 Jul 4.

Abstract

A simple model is developed to treat the energy levels and spectroscopy of diatomic molecules inside C 60. The C 60 cage is treated as spherically symmetric, and the coupling to the C 60 vibrations is ignored. The remaining six degrees of freedom correspond to the vibrations and rotations of the diatomic molecule and the rattling vibration of the molecule inside the cage. By using conservation of angular momentum, we can remove two of these motions and simplify the calculations. The resulting energy levels are simple and can be labeled by a set of quantum numbers. The IR and Raman spectra look like those of gas-phase diatomic molecules at low temperatures. At higher temperatures, hot bands due to the low-frequency rattling mode appear, and the spectrum becomes congested, looking like a solution spectrum.

摘要

我们开发了一个简单模型来处理C60内部双原子分子的能级和光谱。将C60笼视为球对称,并忽略与C60振动的耦合。其余六个自由度对应于双原子分子的振动和转动以及分子在笼内的晃动振动。通过利用角动量守恒,我们可以消除其中两个运动并简化计算。所得的能级很简单,可以用一组量子数来标记。红外光谱和拉曼光谱在低温下类似于气相双原子分子的光谱。在较高温度下,由于低频晃动模式会出现热谱带,光谱变得拥挤,看起来像溶液光谱。

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