Polavarapu Prasad L, Covington Cody L
Department of Chemistry, Vanderbilt University, Nashville, TN.
Chirality. 2014 Sep;26(9):539-52. doi: 10.1002/chir.22316. Epub 2014 Mar 19.
For three different chiroptical spectroscopic methods, namely, vibrational circular dichroism (VCD), electronic circular dichroism (ECD), and Raman optical activity (ROA), the measures of similarity of the experimental spectra to the corresponding spectra predicted using quantum chemical theories are summarized. In determining the absolute configuration and/or predominant conformations of chiral molecules, these similarity measures provide numerical estimates of agreement between experimental observations and theoretical predictions. Selected applications illustrating the similarity measures for absorption, circular dichroism, and corresponding dissymmetry factor (DF) spectra, in the case of VCD and ECD, and for Raman, ROA, and circular intensity differential (CID) spectra in the case of ROA, are presented. The analysis of similarity in DF or CID spectra is considered to be much more discerning and accurate than that in absorption (or Raman) and circular dichroism (or ROA) spectra, undertaken individually.
针对三种不同的手性光谱方法,即振动圆二色性(VCD)、电子圆二色性(ECD)和拉曼光学活性(ROA),总结了实验光谱与使用量子化学理论预测的相应光谱的相似性度量。在确定手性分子的绝对构型和/或主要构象时,这些相似性度量提供了实验观测与理论预测之间一致性的数值估计。给出了选定的应用实例,展示了VCD和ECD情况下吸收、圆二色性以及相应不对称因子(DF)光谱的相似性度量,以及ROA情况下拉曼、ROA和圆强度微分(CID)光谱的相似性度量。与单独进行的吸收(或拉曼)和圆二色性(或ROA)光谱分析相比,DF或CID光谱中的相似性分析被认为更具辨别力和准确性。