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苯胺溶剂中香豆素102发色团电子激发态的含时密度泛函理论研究:电子激发态氢键动力学的重新审视

Time-dependent density functional theory study on electronically excited States of coumarin 102 chromophore in aniline solvent: reconsideration of the electronic excited-state hydrogen-bonding dynamics.

作者信息

Liu Yufang, Ding Junxia, Shi Deheng, Sun Jinfeng

机构信息

Henan Normal University, Xinxiang 453007, China.

出版信息

J Phys Chem A. 2008 Jul 17;112(28):6244-8. doi: 10.1021/jp8022919. Epub 2008 Jun 21.

Abstract

The time-dependent density functional theory method was performed to investigate the electronically excited states of the hydrogen-bonded complex formed by coumarin 102 (C102) chromophore and the hydrogen-donating aniline solvent. At the same time, the electronic excited-state hydrogen-bonding dynamics for the photoexcited C102 chromophore in solution was also reconsidered. We demonstrated that the intermolecular hydrogen bond CO...H-N between C102 and aniline molecules is significantly strengthened in the electronically excited-state upon photoexcitation, since the calculated hydrogen bond energy increases from 25.96 kJ/mol in the ground state to 37.27 kJ/mol in the electronically excited state. Furthermore, the infrared spectra of the hydrogen-bonded C102-aniline complex in both the ground state and the electronically excited state were also calculated. The hydrogen bond strengthening in the electronically excited-state was confirmed for the first time by monitoring the spectral shift of the stretching vibrational mode of the hydrogen-bonded N-H group in different electronic states. Therefore, we believed that the dispute about the intermolecular hydrogen bond cleavage or strengthening in the electronically excited-state of coumarin 102 chromophore in hydrogen donating solvents has been clarified by our studies.

摘要

采用含时密度泛函理论方法研究了香豆素102(C102)发色团与供氢苯胺溶剂形成的氢键复合物的电子激发态。同时,还重新考虑了溶液中光激发的C102发色团的电子激发态氢键动力学。我们证明,光激发后,C102与苯胺分子之间的分子间氢键CO...H-N在电子激发态下显著增强,因为计算得到的氢键能从基态的25.96 kJ/mol增加到电子激发态的37.27 kJ/mol。此外,还计算了基态和电子激发态下氢键C102-苯胺复合物的红外光谱。通过监测不同电子态下氢键N-H基团伸缩振动模式的光谱位移,首次证实了电子激发态下氢键的增强。因此,我们认为我们的研究已经澄清了关于供氢溶剂中香豆素102发色团电子激发态下分子间氢键断裂或增强的争议。

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