Montagnese Tony, Ogliaro François, Wilsey Sarah, Bearpark Michael J
Equipe de Chimie et Biochimie Théoriques, UMR 7565-CNRS, Université Henri Poincaré, Nancy 1, 54506 Vandoeuvre-lès-Nancy, France.
J Phys Chem A. 2008 Dec 18;112(50):13239-43. doi: 10.1021/jp803751b.
Quasi-classical CASSCF trajectory calculations have been carried out on s-cis-1,3-butadiene and substituted 2,3-dideuterio-1,3-butadiene (DDB) to assess the inertial effect on the ultrafast nonadiabatic deactivation of their first singlet excited states. Calculations indicate that even this modest increase in the mass of the 2,3-substituents noticeably affects the photodynamics of cis --> trans isomerization, by reducing the efficiency of the vibrational energy leakage between the initial relaxation and subsequent nonadiabatic decay modes. In qualitative agreement with experimental findings on related 1,3-dienes, the slowing down of the intramolecular vibrational energy redistribution (IVR) upon substitution results in extended excited-state lifetimes and reorients the photoregioselectivity toward cis rotamers and cyclic products.
已对顺式-1,3-丁二烯和取代的2,3-二氘代-1,3-丁二烯(DDB)进行了准经典CASSCF轨迹计算,以评估惯性对其第一单重激发态超快非绝热失活的影响。计算表明,即使2,3-取代基质量的这种适度增加也会显著影响顺式→反式异构化的光动力学,方法是降低初始弛豫和随后非绝热衰变模式之间振动能量泄漏的效率。与相关1,3-二烯的实验结果定性一致,取代后分子内振动能量重新分布(IVR)的减慢导致激发态寿命延长,并使光区域选择性重新朝向顺式旋转异构体和环状产物。