首页> 外文期刊>The Journal of Chemical Physics >Lactic acid in solution: Investigations of lactic acid self-aggregation and hydrogen bonding interactions with water and methanol using vibrational absorption and vibrational circular dichroism spectroscopies
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Lactic acid in solution: Investigations of lactic acid self-aggregation and hydrogen bonding interactions with water and methanol using vibrational absorption and vibrational circular dichroism spectroscopies

机译:溶液中的乳酸:使用振动吸收和振动圆二色光谱研究乳酸与水和甲醇的自聚集和氢键相互作用

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The infrared vibrational absorption (VA) and vibrational circular dichroism (VCD) spectral features of L-(+)-lactic acid (LA) in CDCl3 solution are concentration dependent, showing evidence of oligomerization with increasing concentrations. To understand the observed spectra, geometry optimizations, vibrational frequencies, and VA and VCD intensities were evaluated for (LA)(n) with n=1-4 using density functional theory calculations at the B3LYP/6-311++G(d,p), B3LYP/cc-pVTZ, and in some cases, B3LYP/aug-cc-pVTZ levels of theory. Comparisons with the experimental spectra indicate that the lowest energy LA dimer (AA), formed by two C = O center dot center dot center dot HO hydrogen bonds, is one of the dominating species in solution at room temperature. Possible contributions from the LA trimer and tetramer are also discussed. To model the VA and VCD spectra of LA in water and in methanol, both implicit polarizable continuum model and explicit hydrogen bonding considerations were used. For explicit hydrogen bonding, geometry optimizations of the AA-(water)(n) and AA-(methanol)(n) complexes, with n=2,4,6, were performed, and the corresponding VA and VCD spectra were simulated. Comparisons of the calculated and experimental VA and VCD spectra in the range of 1000-1800 cm(-1) show that AA-(water)(n) with n=6 best reproduces the experimental spectra in water. On the other hand, AA-(methanol)(n) with n=2 reproduces well the experimental results taken in methanol solution. In addition, we found evidence of chirality transfer, i.e., some vibrational bands of the achiral water subunits gain VCD strength upon complexation with the chiral LA solute. The study is the first to use VCD spectroscopy to probe the structures of LA aggregates and hydrogen bonding solvation clusters in the solution phase. (c) 2008 American Institute of Physics.
机译:CDCl3溶液中L-(+)-乳酸(LA)的红外振动吸收(VA)和振动圆二色性(VCD)光谱特征与浓度有关,显示出随着浓度增加而发生低聚的迹象。为了了解观察到的光谱,使用B3LYP / 6-311 ++ G(d,)的密度泛函理论计算,对n = 1-4的(LA)(n)评估了几何优化,振动频率以及VA和VCD强度。 p),B3LYP / cc-pVTZ以及某些情况下的B3LYP / aug-cc-pVTZ理论水平。与实验光谱的比较表明,由两个C = O中心点中心点中心点中心点HO氢键形成的最低能量LA二聚体(AA)是室温下溶液中的主要物质之一。还讨论了来自LA三聚体和四聚体的可能贡献。为了模拟LA在水中和甲醇中的VA和VCD光谱,使用隐式可极化连续谱模型和显式氢键考虑。对于显式氢键,对n = 2,4,6的AA-(水)(n)和AA-(甲醇)(n)配合物进行了几何优化,并模拟了相应的VA和VCD光谱。在1000-1800 cm(-1)范围内计算和实验的VA和VCD光谱的比较表明,n = 6的AA-(水)(n)最佳再现了水中的实验光谱。另一方面,n = 2的AA-(甲醇)(n)很好地再现了在甲醇溶液中获得的实验结果。另外,我们发现了手性转移的证据,即,非手性水亚基的一些振动带在与手性LA溶质络合时获得了VCD强度。这项研究是第一个使用VCD光谱技术来研究溶液相中LA聚集体和氢键合溶剂化簇的结构。 (c)2008年美国物理研究所。

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