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LOW-FREQUENCY RAMAN SCATTERING AND THE FAST RELAXATION PROCESS IN GLYCEROL

机译:甘油的低频拉曼散射和快速弛豫过程

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Ab initio molecular orbital calculations were used to determine the structure and vibrational frequencies of the cyclic glycerol trimer, which represents the region of medium-range ordering in liquid and supercooled glycerol. The calculations reproduced the experimentally observed low-frequency Raman scattering peak (or the ''boson peak'') at similar to 50 per centimeter, which suggests that the peak results from the localized collective motions of the cooperatively hydrogen-bonded hydroxyl groups. The calculations also suggest that the fast relaxation process may result from the translational motion of each glycerol molecule in the cyclic structure. On the basis of these results, a model of the glass transition was developed.
机译:从头算分子轨道计算用于确定环状甘油三聚体的结构和振动频率,其表示液体和过冷甘油的中等范围有序区域。计算结果重现了实验观察到的低频拉曼散射峰(或“玻色子峰”),其近似为50%,这表明该峰是由氢键结合的羟基的局部集体运动引起的。计算还表明,快速松弛过程可能是由于环状结构中每个甘油分子的平移运动引起的。基于这些结果,开发了玻璃化转变的模型。

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