Department of Chemistry, Lomonosov Moscow State University, Russian Federation.
Chemphyschem. 2011 Jul 11;12(10):1860-71. doi: 10.1002/cphc.201001082. Epub 2011 Jun 24.
Photoisomerization around a central fulvene-type double bond is known to proceed through a conical intersection at the perpendicular geometry. The process is studied with an indenylidene-dihydropyridine model compound, allowing the use of visible excitation pulses. Transient absorption shows that 1) stimulated emission shifts to the red and loses oscillator strength on a 50 fs timescale, and 2) bleach recovery is highly nonexponential and not affected by solvent viscosity or methyl substitution at the dihydropyridine ring. Quantum-chemical calculations are used to explain point 1 as a result of initial elongation of the central C=C bond with mixing of S(2) and S(1) states. From point 2 it is concluded that internal conversion of S(1)→S(0) does not require torsional motion to the fully perpendicular state. The S(1) population appears to encounter a sink on the torsional coordinate before the conical intersection is reached. Rate equations cannot model the observed ground-state recovery adequately. Instead the dynamics are best described with a strongly damped oscillatory contribution, which could indicate coherent S(1)-S(0) population transfer.
已知在中心富烯型双键周围的光致异构化是通过垂直几何形状的锥形交叉进行的。该过程用茚基二氢吡啶模型化合物进行研究,允许使用可见激发脉冲。瞬态吸收表明:1)受激发射向红色移动,并在 50 fs 时间尺度上失去振子强度,2)漂白恢复高度非指数,不受溶剂粘度或二氢吡啶环上甲基取代的影响。量子化学计算用于解释第 1 点,这是由于中心 C=C 键的初始伸长以及 S(2)和 S(1)态的混合。从第 2 点可以得出结论,S(1)→S(0)的内转换不需要扭转运动到完全垂直状态。S(1)种群在到达锥形交叉之前似乎在扭转坐标上遇到了一个汇。速率方程不能充分模拟观察到的基态恢复。相反,动力学最好用强烈阻尼的振荡贡献来描述,这可能表明相干 S(1)-S(0)种群转移。