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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Vibrational Circular Dichroism versus Optical Rotation Dispersion and Electronic Circular Dichroism for diastereomers: the stereochemistry of S-(1'-hydroxyethyl)-1-(3'-phenylpropanoyl)-azetidin-2-one
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Vibrational Circular Dichroism versus Optical Rotation Dispersion and Electronic Circular Dichroism for diastereomers: the stereochemistry of S-(1'-hydroxyethyl)-1-(3'-phenylpropanoyl)-azetidin-2-one

机译:非对映体的振动圆二色性与旋光色散和电子圆二色性:S-(1'-羟乙基)-1-(3'-苯基丙酰基)-氮杂环丁烷-2-酮的立体化学

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摘要

The absolute configuration of a relatively large and conformationally flexible chiral compound, 3-(1'-hydroxyethyl)-1-(3'-phenylpropanoyl)-azetidin-2-one, is determined using Vibrational Circular Dichroism (VCD) spectroscopy, Optical Rotation Dispersion (ORD) and Electronic Circular Dichroism (ECD). To that end a state of the art experimental VCD spectrum is compared to a theoretical spectrum and the absolute configuration is assigned. ORD and ECD are also used in the assignment to investigate the complementarity of the three techniques. VCD spectroscopy is found to have important advantages over ORD and ECD for diastereomers. The concept of robust modes is applied to this conformationally flexible molecule, showing that its use is limited for such large and flexible molecules.
机译:使用振动圆二色性(VCD)光谱,旋光性确定相对较大且构象灵活的手性化合物3-(1'-羟乙基)-1-(3'-苯基丙酰基)-氮杂环丁烷-2-一的绝对构型色散(ORD)和电子圆二色性(ECD)。为此,将最先进的实验VCD光谱与理论光谱进行比较,并指定绝对配置。作业中还使用ORD和ECD来研究这三种技术的互补性。对于非对映体,VCD光谱比ORD和ECD具有重要的优势。鲁棒模式的概念应用于此构象柔性分子,表明其使用仅限于此类大分子和柔性分子。

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