Wiebeler Christian, Bader Christina A, Meier Cedrik, Schumacher Stefan
Physics Department and Center for Optoelectronics and Photonics Paderborn (CeOPP), Universität Paderborn, Warburger Strasse 100, 33098 Paderborn, Germany.
Phys Chem Chem Phys. 2014 Jul 28;16(28):14531-8. doi: 10.1039/c3cp55490b.
Photochromism allows for reversible light-induced conversion of a molecular species into a different form with significantly altered optical properties. One promising compound that excels with high fatigue resistance and shows its photochromic functionality both in solution and in molecular solid films is the diarylethene derivative CMTE. Here we present a comprehensive study of its photophysical properties with density-functional theory based methods and benchmark the results against higher-level quantum-chemical approaches and experiments. In addition to static properties such as optical absorption, perceived color, and refractive index, we also investigate reaction dynamics based on non-adiabatic ab initio molecular dynamics. This gives detailed insight into the molecules' ultrafast reaction dynamics and enables us to extract reaction time scales and quantum yields for the observed electrocyclic reaction following photoexcitation.
光致变色允许分子物种通过光诱导可逆地转化为具有显著改变光学性质的不同形式。一种具有高抗疲劳性且在溶液和分子固体薄膜中均表现出光致变色功能的有前景的化合物是二芳基乙烯衍生物CMTE。在此,我们使用基于密度泛函理论的方法对其光物理性质进行了全面研究,并将结果与更高层次的量子化学方法和实验进行了对比。除了诸如光吸收、感知颜色和折射率等静态性质外,我们还基于非绝热从头算分子动力学研究了反应动力学。这使我们能够深入了解分子的超快反应动力学,并使我们能够提取光激发后观察到的电环化反应的反应时间尺度和量子产率。