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旋转受限的3,8''-双黄酮桑橙黄酮电子圆二色性的理论计算

Theoretical calculation of electronic circular dichroism of the rotationally restricted 3,8''-biflavonoid morelloflavone.

作者信息

Ding Yuanqing, Li Xing-Cong, Ferreira Daneel

机构信息

National Center for Natural Products Research, Research Institute of Pharmaceutical Sciences, and Department of Pharmacognosy, School of Pharmacy, The University of Mississippi, University, MS 38677, USA.

出版信息

J Org Chem. 2007 Nov 23;72(24):9010-7. doi: 10.1021/jo071134z. Epub 2007 Oct 24.

Abstract

Theoretical calculation of electronic circular dichroism (ECD) of the rotationally restricted 3,8''-biflavonoid (+)-morelloflavone using time dependent density functional theory (TDDFT), performed at 298 K at B3LYP-SCRF/6-31G*//B3LYP/6-31G* level with COSMO model, permitted unequivocal assignment of its 2R,3S absolute configuration. The experimentally observed Cotton effect (CE) around 290 nm is contributed by the acetophenone pi --> pi* transition of the ABC-flavanone moiety and the electronic transition within the DEF-flavone moiety, while another diagnostic positive CE around 350 nm is attributable to the electronic interaction between the ABC-flavanone moiety and the DEF-flavone moiety, as well as the electronic transition within the DEF-flavone moiety. The remarkable differences of the calculated ECD of its two rotamers indicate that the rotational restrictions significantly affect the ECD of 3,8''-biflavonoids. Empirical ECD rules derived from monomeric flavonoids may not be applicable to configurational assignment of complex 3,8''-biflavonoids. This study has provided new insights in interpreting the experimentally observed ECD spectra of this class of compounds.

摘要

使用含时密度泛函理论(TDDFT)对旋转受限的3,8''-双黄酮(+)-莫雷洛黄酮的电子圆二色性(ECD)进行理论计算,该计算在298 K下于B3LYP-SCRF/6-31G*//B3LYP/6-31G水平并采用COSMO模型进行,从而明确确定了其2R,3S绝对构型。实验观察到的290 nm左右的科顿效应(CE)由ABC-黄烷酮部分的苯乙酮π→π跃迁以及DEF-黄酮部分内的电子跃迁引起,而350 nm左右另一个具有诊断意义的正CE则归因于ABC-黄烷酮部分与DEF-黄酮部分之间的电子相互作用以及DEF-黄酮部分内的电子跃迁。其两种旋转异构体计算得到的ECD的显著差异表明,旋转限制对3,8''-双黄酮的ECD有显著影响。从单体黄酮类化合物推导出来的经验ECD规则可能不适用于复杂的3,8''-双黄酮的构型归属。本研究为解释这类化合物的实验观察到的ECD光谱提供了新的见解。

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