Department of Physics and School of Molecular Sciences, Arizona State University, P.O. Box 871504, Tempe, Arizona 85287, USA.
J Chem Phys. 2019 Feb 21;150(7):074504. doi: 10.1063/1.5082970.
An analytical theory is developed for radiationless transitions in molecules characterized by nonequilibrium populations of their vibrational modes. Several changes to the standard transition-state framework follow from nonequilibrium conditions: (i) non-Arrhenius kinetics, (ii) the violation of the fluctuation-dissipation theorem (FDT), and (iii) the breakdown of the detailed balance. The violation of the FDT is reflected in the breakdown of relations between the first (Stokes shift) and second (inhomogeneous band-width) spectral moments and of similar relations between reorganization parameters for radiationless transitions. The detailed balance between the forward and backward rates is not maintained, requiring a lower effective free energy of the reaction relative to the thermodynamic limit. The model suggests that strong control of radiationless transitions can be achieved if a nonequilibrium population of vibrations modulating the donor-acceptor distance is produced.
本文针对振动模式非平衡分布的分子,发展了一种无辐射跃迁的分析理论。非平衡条件下,标准过渡态理论框架发生了以下几方面的变化:(i)非阿仑尼乌斯动力学;(ii) 违背涨落耗散定理(FDT);(iii)破坏了详细平衡。FDT 的破坏反映在无辐射跃迁的第一(Stokes 位移)和第二(非均匀带宽)光谱矩之间的关系以及重组参数之间的类似关系的破坏。前向和后向速率之间的详细平衡不再保持,这需要相对于热力学极限降低反应的有效自由能。该模型表明,如果产生调制给体-受体距离的振动的非平衡分布,就可以实现对无辐射跃迁的有效控制。