Department of Physical Chemistry, University of Geneva, 30 Quai Ernest-Ansermet, CH-1211 Geneva, Switzerland.
J Phys Chem B. 2020 Nov 5;124(44):9945-9950. doi: 10.1021/acs.jpcb.0c09031. Epub 2020 Oct 23.
Reliable estimation of the driving force for photoinduced electron transfer between neutral reactants is of utmost importance for most practical applications of these reactions. The driving force is usually calculated from the Weller equation, which contains a Coulomb term, , whose magnitude in polar solvents is debated. We have performed umbrella sampling molecular dynamics simulations to determine from the potentials of mean force between neutral and ionic donor/acceptor pairs of different sizes in solvents of varying polarity. According to the simulations, in polar solvents is a factor of 2 more negative than typically calculated according to the Weller equation. Use of the π-stack contact distance in the Weller equation instead of the van der Waals radius recovers the correct value of , but this is mostly fortuitous due to the compensating effects of overestimating the dielectric screening at contact and neglecting both charge dilution and desolvation.
可靠估计中性反应物之间光诱导电子转移的驱动力对于这些反应的大多数实际应用至关重要。驱动力通常根据 Weller 方程计算得出,其中包含一个库仑项 ,其在极性溶剂中的大小存在争议。我们已经进行了伞形采样分子动力学模拟,以确定不同大小的中性和离子给体/受体对在不同极性溶剂中的平均力势能之间的 。根据模拟结果,极性溶剂中的 比根据 Weller 方程通常计算的值小 2 倍。在 Weller 方程中使用 π-堆积接触距离而不是范德华半径可以恢复正确的 值,但这主要是由于在接触处高估介电屏蔽和忽略电荷稀释和去溶剂化的补偿效应而导致的偶然现象。