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首页> 外文期刊>Chemistry: A European journal >Determination of the Absolute Configuration of Pentacoordinate Chiral Phosphorus Compounds in Solution by Using Vibrational Circular Dichroism Spectroscopy and Density Functional Theory
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Determination of the Absolute Configuration of Pentacoordinate Chiral Phosphorus Compounds in Solution by Using Vibrational Circular Dichroism Spectroscopy and Density Functional Theory

机译:振动圆二色光谱和密度泛函理论测定溶液中五配位手性磷化合物的绝对构型

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Vibrational circular dichroism (VCD) spectroscopic measurements and density functional theory (DFT) calculations have been used to obtain the absolute structural information about four sets of diastereomers of pentacoordinate spirophosphoranes derived separately from l- ACHTUNGTRENUNG(or d-) valine and l- ACHTUNGTRENUNG(or d-) leucine for the first time. Each compound contains three stereogenic centers: one at the phosphorus center and two at the amino acid ligands. Extensive conformational searches for the compounds have been carried out and their vibrational absorption (VA) and VCD spectra have been simulated at the B3LYP/6-311++ G** level. Although both VA and VCD spectra are highly sensitive to the structural variation of the apical axis, that is, the OPO or NPO arrangement, the rotamers generated by the aliphatic amino side chains show little effect on both. The dominant experimental VCD features in the 1100– 1500 cm1 region were found to be controlled by the chirality at the phosphorus center, whereas those at the C=O stretching region are determined by the chirality of the amino acid ligands. The good agreement between the experimental VA and VCD spectra in CDCl3 solution and the simulated ones allows us to assign the absolute configurations of these pentacoordinate phosphorus compounds with high confidence. This study shows that the VCD spectroscopy complemented with DFT calculations is a powerful and reliable method for determining the absolute configurations and dominating conformers of synthetic phosphorus coordination complexes in solution.
机译:振动圆二色性(VCD)光谱测量和密度泛函理论(DFT)计算已用于获得有关分别衍生自l-乙酰丙酮(或d-)缬氨酸和l-乙酰丙酮的五配体螺旋磷光烷的四对非对映异构体的绝对结构信息。或d-)首次亮氨酸。每种化合物均包含三个立体异构中心:一个位于磷中心,两个位于氨基酸配体。已对该化合物进行了广泛的构象搜索,并在B3LYP / 6-311 ++ G **水平模拟了其振动吸收(VA)和VCD光谱。尽管VA和VCD光谱都对顶轴的结构变化(即OPO或NPO排列)高度敏感,但由脂肪族氨基侧链生成的旋转异构体对两者均几乎没有影响。发现在1100–1500 cm1区域中VCD的主要实验特征受磷中心的手性控制,而C = O拉伸区域的VCD特征则由氨基酸配体的手性决定。 CDCl3溶液中的实验VA和VCD光谱与模拟光谱之间的良好一致性使我们能够高度自信地分配这些五配位磷化合物的绝对构型。这项研究表明,VCD光谱结合DFT计算是一种确定溶液中合成磷配位化合物的绝对构型和支配构象的强大而可靠的方法。

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