Institute of Atomic and Molecular Physics, Jilin University, Changchun 130012, China.
J Comput Chem. 2011 Nov 15;32(14):3058-61. doi: 10.1002/jcc.21888. Epub 2011 Jul 25.
In this work, the excited-state hydrogen bonding dynamics of photoexcited coumarin 102 in aqueous solvent is reconsidered. The electronically excited states of the hydrogen bonded complexes formed by coumarin 102 (C102) chromophore and the hydrogen donating water solvent have been investigated using the time-dependent density functional theory method. Two intermolecular hydrogen bonds between C102 and water molecules are considered. The previous works (Wells et al., J Phys Chem A 2008, 112, 2511) have proposed that one intermolecular hydrogen bond would be strengthened and the other one would be cleaved upon photoexcitation to the electronically excited states. However, our theoretical calculations have demonstrated that both the two intermolecular hydrogen bonds between C102 solute and H(2)O solvent molecules are significantly strengthened in electronically excited states by comparison with those in ground state. Hence, we have confirmed again that intermolecular hydrogen bonds between C102 chromophore and aqueous solvents are strengthened not cleaved upon electronic excitation, which is in accordance with Zhao's works.
在这项工作中,重新考虑了水溶剂中光激 coumarin 102 的激发态氢键动力学。使用含时密度泛函理论方法研究了 coumarin 102 (C102) 发色团与提供氢键的水分子形成的氢键复合物的电子激发态。考虑了 C102 和水分子之间的两个分子间氢键。之前的工作(Wells 等人,J Phys Chem A 2008, 112, 2511)提出,在光激发到电子激发态时,一个分子间氢键将增强,另一个将断裂。然而,我们的理论计算表明,与基态相比,C102 溶质和 H(2)O 溶剂分子之间的两个分子间氢键在电子激发态下都显著增强。因此,我们再次证实,C102 发色团与水溶剂之间的分子间氢键在电子激发时不会断裂而是增强,这与 Zhao 的工作一致。