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二苯甲酮、芴酮、2,2'-联吡啶、4,4'-二叔丁基-2,2'-联吡啶和蒽的持久性自由基阴离子的拉曼光谱:高度离域自由基体系的密度泛函理论与实验结果的极佳吻合。

Raman Spectra of Persistent Radical Anions from Benzophenone, Fluorenone, 2,2'-Bipyridyl, 4,4'-Di--butyl-2,2'-dipyridyl, and Anthracene: Excellent Agreement between DFT and Experiment for Highly Delocalized Radical Systems.

作者信息

Juneau Antoine, Frenette Mathieu

机构信息

Département de Chimie, Université du Québec à Montréal, Case Postale 8888, Succursale Centre-Ville, Montréal, Québec H3C 3P8, Canada.

出版信息

J Phys Chem B. 2021 Feb 18;125(6):1595-1603. doi: 10.1021/acs.jpcb.0c04742. Epub 2021 Feb 5.

DOI:10.1021/acs.jpcb.0c04742
PMID:33544614
Abstract

We report detailed Raman spectra for the neutral and radical anion forms of benzophenone, fluorenone, 2,2'-bipyridyl, 4,4'-di--butyl-2,2'-dipyridyl, and anthracene. Density functional theory (DFT) predictions for the Raman spectra of these molecules give additional insight into the assignment of each vibrational mode. While the use of DFT has been problematic in quantifying the thermochemistry of highly delocalized radicals, we find that DFT-predicted spectra using the popular B3LYP functional are in excellent agreement with the observed Raman spectra. In the case of the two bipyridyl compounds, the Raman spectra allowed us to conclude that the cis form of the radical anion complexed to a sodium cation was the preferred configuration. Benzophenone and fluorenone radical anions gave a significantly weakened C═O bond stretching vibrational frequency as expected from the population of an antibonding π* orbital. For benzophenone, the C═O vibration dropped from 1659 to 1403 cm upon reduction. Similarly, fluorenone showed a C═O vibration observed at 1719 cm for the neutral form that decreased to 1522 cm for the radical anion. The structurally rigid anthracene showed relatively smaller Raman band shifts upon single-electron reduction as the π* orbital is more equally delocalized on the entire structure. In total, we correlated 65 DFT-predicted vibrational modes for the neutral molecules with an overall error of 7.1 cm (root-mean-square errors (RMSEs)) and 67 DFT-predicted vibrational modes for radical anions with an overall error of 9.9 cm. These comparisons between theory and experiment are another example to demonstrate the power of DFT in predicting the identity and geometry of molecules using Raman spectroscopy.

摘要

我们报告了二苯甲酮、芴酮、2,2'-联吡啶、4,4'-二叔丁基-2,2'-联吡啶和蒽的中性和自由基阴离子形式的详细拉曼光谱。这些分子拉曼光谱的密度泛函理论(DFT)预测为每种振动模式的归属提供了更多见解。虽然在量化高度离域自由基的热化学方面使用DFT存在问题,但我们发现使用流行的B3LYP泛函预测的DFT光谱与观察到的拉曼光谱非常吻合。对于两种联吡啶化合物,拉曼光谱使我们能够得出结论,与钠阳离子络合的自由基阴离子的顺式形式是优选构型。正如反键π轨道的占据所预期的那样,二苯甲酮和芴酮自由基阴离子的C═O键伸缩振动频率显著减弱。对于二苯甲酮,还原后C═O振动从1659 cm降至1403 cm。同样,芴酮中性形式在1719 cm处观察到的C═O振动,对于自由基阴离子降至1522 cm。结构刚性的蒽在单电子还原时显示出相对较小的拉曼带位移,因为π轨道在整个结构上更均匀地离域。总体而言,我们将中性分子的65种DFT预测振动模式进行了关联,总体误差为7.1 cm(均方根误差(RMSE)),将自由基阴离子的67种DFT预测振动模式进行了关联,总体误差为9.9 cm。理论与实验之间的这些比较是另一个例子,证明了DFT在使用拉曼光谱预测分子的特性和几何结构方面的强大功能。

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