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对一系列樟脑相关分子的红外和振动圆二色性光谱进行比较分析。

Comparative analysis of IR and vibrational circular dichroism spectra for a series of camphor-related molecules.

机构信息

Dipartimento di Scienze Biomediche e Biotecnologie, Università di Brescia, 25123 Brescia, Italy.

出版信息

J Phys Chem A. 2009 Oct 22;113(42):11390-405. doi: 10.1021/jp905644d.

Abstract

The absorption spectra and vibrational circular dichroism (VCD) spectra in the mid-IR range 1600-950 cm(-1) of 10 camphor-related compounds have been recorded and compared to DFT calculated spectra at the B3PW91/TZ2P level and have been examined together with the corresponding data of the parent molecules. The rigidity of the bridged structure common to all compounds investigated permits (a) identification of three spectroscopic regions in the mid-IR range that can be "used" separately by the interested stereochemist for structural diagnosis and assignment of some major characteristics of the VCD spectra in these regions to what we call "skeletal chiral sense" and (b) recognition of possible conformers for flexible substituent groups, when present. VCD spectra of the 10 molecules have been recorded and analyzed also in the CH-stretching region, 3100-2800 cm(-1). Here, we have been able to identify and characterize features of vibrational excitons by comparison of data within the 10-molecule class. To find a theoretical justification of result (a), we have examined the potential energy distribution of the normal modes in the mid-IR range, the partitioning of the calculated rotational strengths in terms of contributions from all couples of internal coordinates, the angle formed by the two vectors, the electric dipole transition moment and the magnetic dipole transition moment, and finally the overlap of normal modes of different molecules. A discussion is provided as to the usability of the introduced algorithms.

摘要

已记录并比较了 10 种莰烷相关化合物在中红外范围 1600-950 cm(-1) 处的吸收光谱和振动圆二色性(VCD)光谱与 B3PW91/TZ2P 水平的 DFT 计算光谱,并与相应的母体分子数据一起进行了检查。所有研究化合物共有的桥接结构的刚性允许 (a) 在中红外范围内识别三个可单独“用于”有兴趣的立体化学家进行结构诊断和这些区域 VCD 光谱某些主要特征分配的光谱区域,我们称之为“骨架手性感觉”,以及 (b) 识别存在时的柔性取代基基团的可能构象。还记录和分析了 10 种分子在 CH 伸缩区域 3100-2800 cm(-1) 中的 VCD 光谱。在这里,我们能够通过比较 10 种分子类内的数据来识别和表征振动激子的特征。为了找到结果 (a) 的理论依据,我们检查了中红外范围内的正则模态的势能分布,根据所有内部坐标对的贡献对计算的旋转强度进行分区,两个向量形成的角度,电偶极矩和磁偶极矩,最后是不同分子的正则模态的重叠。对引入的算法的可用性进行了讨论。

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