Photochemistry and Spectroscopy Laboratory, Faculty of Chemistry, Adam Mickiewicz University, Poznań, Poland.
Phys Chem Chem Phys. 2012 Jul 7;14(25):8842-51. doi: 10.1039/c2cp23869a. Epub 2012 Feb 7.
The hydrogen bond energies for 4H-1-benzopyrane-4-thione (BPT) in its ground and two lowest excited singlet electronic states have been determined using ab initio methods. It was shown that the BPT molecule can form, as an acceptor, four relatively strong hydrogen bonds with water molecules, leading to a stable complex in the ground electronic state S(0). The hydrogen bonds involving the sulfur atom from the thiocarbonyl group were found to be stronger than those involving the oxygen atom from the benzopyran moiety. The former hydrogen bonds were predicted to become significantly weaker upon excitation to the S(1) state and, in contrast, stronger upon excitation to the S(2) state. Calculated changes in the hydrogen bond energy due to the S(0)→ S(1) and S(0)→ S(2) excitation are in very good agreement with the experimental values obtained from the absorption solvatochromic study, according to a procedure proposed by us in [E. Krystkowiak, et al., J. Photochem. Photobiol. A: Chem., 2006, 184, 250]. The maxima of absorption spectra of the BPT-water hydrogen-bonded complex, calculated taking into consideration nonspecific solute-solvent interactions, are also in good agreement with the experimental results.
使用从头算方法确定了 4H-1-苯并吡喃-4-硫酮(BPT)在基态和两个最低激发单线态电子态的氢键能。结果表明,BPT 分子可以作为受体与水分子形成四个相对较强的氢键,从而在基态电子态 S(0)中形成稳定的配合物。研究发现,涉及硫羰基硫原子的氢键比涉及苯并吡喃部分氧原子的氢键要强。与激发到 S(1)态相比,预测前一种氢键在激发到 S(2)态时会显著减弱,而与激发到 S(2)态相比,后一种氢键在激发到 S(2)态时会增强。根据我们在[E. Krystkowiak 等人,J. Photochem. Photobiol. A: Chem.,2006,184,250]中提出的程序,计算得到的氢键能由于 S(0)→S(1)和 S(0)→S(2)激发而发生的变化与从吸收溶剂化变色研究中获得的实验值非常吻合。考虑到非特异性溶质-溶剂相互作用,计算得到的 BPT-水氢键配合物吸收光谱的最大值也与实验结果吻合较好。