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首页> 外文期刊>Journal of Molecular Structure >Inelastic neutron scattering and DFT study of 1,6-anhydro-beta-D-glucopyranose (levoglucosan)
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Inelastic neutron scattering and DFT study of 1,6-anhydro-beta-D-glucopyranose (levoglucosan)

机译:1,6-脱水β-D-吡喃葡萄糖(左旋葡聚糖)的非弹性中子散射和DFT研究

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We report an inelastic neutron scattering (INS) study of a monosaccharide, 1,6-anhydro-beta-D-glucopyranose, C6O5H10 (levoglucosan). The assignment of the experimental vibrational spectrum measured in the range 30-4000 cm(-1) on TOSCA spectrometer has been made by means of DFT calculations. To simulate crystal environment both molecular cluster and periodic models were used. The INS spectrum calculated with the periodic model is a better fit of the experiment than the cluster model. On the other hand the peaks between 630 and 730 cm(-1) in the experimental INS assigned to OH torsional modes were reproduced better by the cluster calculations. The study has been completed by an alternative approach, molecular dynamics (MD) calculations, done at the same level of the DFT theory. The simulation trajectories were analyzed in both time and frequency space to determine the dynamical contributions to the observed spectra. Comparing the positions of the peaks in the power spectra and in the INS spectra, the former gave a better fit of the experimental ones in all the frequency ranges when compared to the spectra based on dynamical matrix. Our calculations, in general, underestimated the frequencies of the modes in the region between 500 and 1500 cm(-1) by maximum of 30 cm(-1). The power spectra of the velocity autocorrelation function for centre of mass of a molecule of levoglucosan show peaks below 160 cm(-1) (c) 2007 Elsevier B.V. All rights reserved.
机译:我们报告了单糖,1,6-脱水β-D-吡喃葡萄糖,C6O5H10(左旋葡聚糖)的非弹性中子散射(INS)研究。通过DFT计算已经确定了在TOSCA光谱仪​​上测量的30-4000 cm(-1)范围内的实验振动光谱的分配。为了模拟晶体环境,使用了分子簇和周期模型。用周期模型计算出的INS谱比聚类模型更适合实验。另一方面,通过聚类计算可以更好地重现实验INS中分配给OH扭转模式的630至730 cm(-1)之间的峰。该研究已通过与DFT理论相同水平的另一种方法,即分子动力学(MD)计算完成。在时间和频率空间中分析了仿真轨迹,以确定对观察到的光谱的动力学贡献。比较功率谱和INS谱中的峰位置,与基于动态矩阵的谱相比,前者在所有频率范围内都更适合实验。通常,我们的计算低估了500和1500 cm(-1)之间区域中的模频率,最多低了30 cm(-1)。左旋葡聚糖分子质心的速度自相关函数的功率谱显示峰值低于160 cm(-1)(c)2007 Elsevier B.V.保留所有权利。

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