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控制基于卟啉的超分子体系中的手性效应:理论分析与实验观察

Controlling Chirogenic Effects in Porphyrin Based Supramolecular Systems: Theoretical Analysis Versus Experimental Observations.

作者信息

Osadchuk Irina, Luts Hanna-Eliisa, Zahharova Aleksandra, Tamm Toomas, Borovkov Victor

机构信息

Department of Chemistry and Biotechnology, Tallinn University of Technology, Akadeemia tee 15, 12618, Tallinn, Estonia.

出版信息

Chemphyschem. 2024 Jun 3;25(11):e202400104. doi: 10.1002/cphc.202400104. Epub 2024 May 1.

Abstract

Electronic circular dichroism (ECD) spectroscopy is a widely employed method for studying chiral analysis, requiring the presence of a chromophore close to a chiral centre. Porphyrinoids are found to be one of the best chromophoric systems serving for this purpose and enabling the application of ECD spectroscopy for chirality determination across diverse classes of organic compounds. Consequently, it is crucial to understand the induction mechanisms of ECD in the porphyrin-based complexes. The present study explores systematically the influence of secondary chromophores, bonded to an achiral zinc porphyrin or to chiral guest molecules, on the B-region of ECD spectra using the time-dependent density functional theory (TD-DFT) calculations. The study analyses the impact of change in both the conformation of achiral porphyrin (host) and change in position and conformation of chiral organic molecule (guest) on the B-band of ECD spectra (energy, intensity, sign of Cotton effect). Finally, conclusions made on model complexes are applied to published experimental data, contributing to a deeper understanding of various factors influencing ECD spectra in chiral systems. In addition, a computer program aimed to help rationalise ECD spectra by visualizing corresponding orbital energies, rotatory strengths, electric and magnetic transition moments, and angles between them, is presented.

摘要

电子圆二色光谱(ECD)是一种广泛用于手性分析研究的方法,需要在手性中心附近存在发色团。卟啉类化合物被发现是用于此目的的最佳发色体系之一,能够将ECD光谱应用于各类有机化合物的手性测定。因此,了解基于卟啉的配合物中ECD的诱导机制至关重要。本研究使用含时密度泛函理论(TD-DFT)计算系统地探索了与非手性锌卟啉或手性客体分子相连的二级发色团对ECD光谱B区域的影响。该研究分析了非手性卟啉(主体)构象的变化以及手性有机分子(客体)位置和构象的变化对ECD光谱B带(能量、强度、科顿效应的符号)的影响。最后,将对模型配合物得出的结论应用于已发表的实验数据,有助于更深入地理解影响手性体系中ECD光谱的各种因素。此外,还介绍了一个计算机程序,旨在通过可视化相应的轨道能量、旋光强度、电和磁跃迁矩以及它们之间的角度来帮助解释ECD光谱。

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