Credo Chung Wilfredo, Lan Zhenggang, Ohtsuki Yukiyoshi, Shimakura Noriyuki, Domcke Wolfgang, Fujimura Yuichi
Department of Chemistry, Graduate School of Science, Tohoku University, Sendai, 980-8578, Japan.
Phys Chem Chem Phys. 2007 May 7;9(17):2075-84. doi: 10.1039/b618745e. Epub 2007 Feb 26.
The conical intersections of the dissociative 1pisigma* excited state with the lowest 1pipi* excited state and the electronic ground state of 9H-adenine have been investigated with multireference electronic structure calculations. Adiabatic and quasidiabatic potential energy surfaces and coupling elements were calculated as a function of the NH stretch coordinate of the azine group and the out-of-plane angle of the hydrogen atom, employing MultiReference Configuration-Interaction (MRCI) as well as Complete-Active-Space Self-Consistent-Field (CASSCF) methods. Characteristic properties of the 1pipi*-1pisigma* and 1pisigma*-S0 conical intersections, such as the diabatic-to-adiabatic mixing angle, the geometric phase of the adiabatic electronic wavefunctions, the derivative coupling, as well as adiabatic and diabatic transition dipole moment surfaces were investigated in detail. These data are a prerequisite for future quantum wavepacket simulations of the photodissociation and internal-conversion dynamics of adenine.
通过多参考电子结构计算研究了9H-腺嘌呤的离解性1πσ激发态与最低1ππ激发态及电子基态的锥形交叉。采用多参考组态相互作用(MRCI)以及完全活性空间自洽场(CASSCF)方法,计算了绝热和准绝热势能面以及耦合元素,它们是嗪基团的NH伸缩坐标和氢原子面外角度的函数。详细研究了1ππ*-1πσ和1πσ-S0锥形交叉的特征性质,如非绝热到绝热混合角、绝热电子波函数的几何相位、导数耦合以及绝热和非绝热跃迁偶极矩面。这些数据是未来对腺嘌呤光解离和内转换动力学进行量子波包模拟的先决条件。