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柔性糖衍生物葡萄糖酸根阴离子的拉曼光谱和拉曼光学活性光谱解析

Interpretation of Raman and Raman optical activity spectra of a flexible sugar derivative, the gluconic acid anion.

作者信息

Kaminský Jakub, Kapitán Josef, Baumruk Vladimír, Bednárová Lucie, Bour Petr

机构信息

Institute of Organic Chemistry and Biochemistry, Academy of Sciences, 166 10 Prague, Czech Republic.

出版信息

J Phys Chem A. 2009 Apr 16;113(15):3594-601. doi: 10.1021/jp809210n.

Abstract

Raman scattering and its polarized extension, Raman optical activity (ROA), are commonly used for monitoring of molecular conformational equilibria in solutions. This is complicated for saccharides due to extensive motions of the hydroxyl groups and other molecular parts. Standard interpretation procedures involving ab initio spectral simulations for a limited set of conformers are not adequate. In this study, a more general approach is proposed for the gluconic acid anion taken as a model compound, where quantum simulations of the spectra are directly coupled with molecular dynamics (MD) techniques. Such a multiscale approach reveals how the structural information is encoded in the broadened spectral lines. The spectra were simulated for solvent-solute clusters generated by MD. Conformational averaging was enabled by a limited library of conformers for which the spectral parameters could be calculated ab initio and moved on the MD geometries by Cartesian coordinate tensor transfer techniques. The B3LYP/CPCM/6-31+G** approximation was used as a default for computation of the source force fields and polarizability derivatives. The spectra thus obtained relatively faithfully reproduced most of the experimental features. The Amber and polarizable Amoeba MD force fields produced similar results; application of the latter, however, was limited by the long time necessary to achieve a converged conformational equilibrium. Both MD simulation and spectral averaging suggest that the hydroxyl groups as well as the backbone C-C bonds rotate relatively freely, with some restrictions in the vicinity of the carboxyl group. In spite of the averaging, spectral response of characteristic vibrational normal mode families, such as CH and OH bending, can clearly be identified in the spectra. The simulations thus confirm the experimental fact that flexible saccharides exhibit significant vibrational activity that reveals precious information about molecular structure and dynamics encoded in the Raman and ROA spectral shapes.

摘要

拉曼散射及其偏振扩展——拉曼光学活性(ROA),通常用于监测溶液中的分子构象平衡。由于羟基和分子其他部分的广泛运动,对于糖类来说这变得很复杂。涉及对有限数量构象异构体进行从头算光谱模拟的标准解释程序并不充分。在本研究中,提出了一种更通用的方法,以葡萄糖酸阴离子作为模型化合物,其中光谱的量子模拟直接与分子动力学(MD)技术相结合。这种多尺度方法揭示了结构信息是如何编码在展宽的谱线中的。对由MD生成的溶剂 - 溶质簇的光谱进行了模拟。通过有限的构象异构体库实现构象平均,对于这些构象异构体,可以从头算计算光谱参数,并通过笛卡尔坐标张量转移技术在MD几何结构上移动。B3LYP/CPCM/6 - 31 + G**近似被用作计算源力场和极化率导数的默认方法。由此获得的光谱相对忠实地再现了大多数实验特征。Amber和可极化的Amoeba MD力场产生了相似的结果;然而,后者的应用受到达到收敛构象平衡所需长时间的限制。MD模拟和光谱平均都表明,羟基以及主链C - C键相对自由地旋转,在羧基附近有一些限制。尽管进行了平均,但在光谱中仍可清楚地识别出特征振动正则模族的光谱响应,如CH和OH弯曲。因此,模拟证实了实验事实,即柔性糖类表现出显著的振动活性,揭示了拉曼光谱和ROA光谱形状中编码的有关分子结构和动力学的宝贵信息。

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