Department of Chemistry, Iowa State University , Ames, Iowa 50011, United States.
J Phys Chem B. 2013 Dec 12;117(49):15386-94. doi: 10.1021/jp404686c. Epub 2013 Jul 2.
Excited-state enol to keto tautomerization of 7-hydroxy-4-methylcoumarin (C456) with three water molecules (C456:3H2O), is theoretically investigated using time-dependent density functional theory (TDDFT) combined with the polarizable continuum model and 200 waters explicitly modeled with the effective fragment potential. The tautomerization of C456 in the presence of three water molecules is accompanied by an asynchronous quadruple hydrogen atom transfer reaction from the enol to the keto tautomer in the excited state. TDDFT with the PBE0 functional and the DH(d,p) basis set is used to calculate the excited-state reaction barrier height, absorption (excitation), and fluorescence (de-excitation) energies. These results are compared with the available experimental and theoretical data. In contrast to previous work, it is predicted here that the coumarin 456 system undergoes a hydrogen atom transfer, not a proton transfer. The calculated reaction barrier of the first excited state of C456:3H2O with 200 water molecules is found to be -0.23 kcal/mol without zero-point energy (-5.07 kcal/mol with zero point energy, i.e., the activation energy).
采用含时密度泛函理论(TDDFT)结合极化连续模型和有效片段势能,对 7-羟基-4-甲基香豆素(C456)与三个水分子(C456:3H2O)的激发态烯醇到酮式互变异构的反应进行了理论研究。在三个水分子的存在下,C456 的互变异构伴随着从烯醇到酮式互变异构的激发态异步四重氢原子转移反应。采用 PBE0 泛函和 DH(d,p)基组的 TDDFT 用于计算激发态反应势垒高度、吸收(激发)和荧光(退激发)能量。将这些结果与现有的实验和理论数据进行了比较。与之前的工作不同,这里预测香豆素 456 体系经历的是氢原子转移,而不是质子转移。计算得到含有 200 个水分子的 C456:3H2O 的第一激发态的反应势垒为-0.23 kcal/mol(零能点为-5.07 kcal/mol,即活化能)。