首页> 外文期刊>The Journal of Chemical Physics >Probing chiral solute-water hydrogen bonding networks by chirality transfer effects: A vibrational circular dichroism study of glycidol in water
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Probing chiral solute-water hydrogen bonding networks by chirality transfer effects: A vibrational circular dichroism study of glycidol in water

机译:通过手性传递效应探测手性溶质-水氢键网络:水中缩水甘油的振动圆二色性研究

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摘要

Vibrational absorption (VA) and vibrational circular dichroism (VCD) spectra of (S)-(-)glycidol were measured in water with a concentration of 6.0M in the 1000–1750 cm~(-1) region. Prominent and complex VCD spectral features were detected at the water bending vibrational region. Our experimental results show that water molecules can become optically active through hydrogen bonding interactions with glycidol molecules. To model the glycidol-water hydrogen bonding network in the solution, molecular dynamics simulations using the AMBER9 suite of programs were carried out. Altogether, 34 conformers of the small glycidol-(water)N clusters with N=1, 2, 3, and 4 were considered. Geometry optimizations, harmonic frequency calculations, and the VA and VCD intensity predictions of these small glycidol-water clusters were performed at the B3LYP/6-311 + +G(d, p) level of theory using the GAUSSIAN 03 program package. Strong cooperative hydrogen bonding effects were detected in the larger glycidol-(water)N clusters. The population weighted VA and VCD spectra of each N group of glycidol (water)N=1,2,3,4 were used to produce the simulated VA and VCD spectra, which are in good agreement with the experimental VA and VCD spectra. The study shows that all these clusters make important contributions to the observed spectra and are the most important species in the aqueous solution with complicated equilibriums among them.
机译:(S)-(-)缩水甘油的振动吸收(VA)和振动圆二色性(VCD)光谱在1000–1750 cm〜(-1)区域中的浓度为6.0M的水中进行了测量。在水弯曲振动区域检测到了明显而复杂的VCD光谱特征。我们的实验结果表明,水分子可以通过与缩水甘油分子的氢键相互作用而变得具有光学活性。为了对溶液中的缩水甘油-氢键网络进行建模,使用AMBER9程序套件进行了分子动力学模拟。总共考虑了34个构象的N = 1、2、3和4的小型缩水甘油-(水)N簇。使用GAUSSIAN 03程序包,在理论上以B3LYP / 6-311 + + G(d,p)的水平对这些小的缩水甘油-水簇进行了几何优化,谐波频率计算以及VA和VCD强度预测。在较大的缩水甘油-(水)N团簇中检测到强的协同氢键作用。每N组缩水甘油(水)N = 1,2,3,4的种群加权VA和VCD光谱用于生成模拟VA和VCD光谱,与实验VA和VCD光谱非常吻合。研究表明,所有这些簇对观察到的光谱做出了重要贡献,并且是水溶液中最重要的物种,它们之间具有复杂的平衡。

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