J Phys Chem B. 2019 Oct 10;123(40):8448-8456. doi: 10.1021/acs.jpcb.9b06580. Epub 2019 Sep 27.
We report on the motional and proton transfer dynamics of the super photobase FR0-SB in the series of normal alcohols C1 (methanol) through C8 (-octanol) and ethylene glycol. Steady-state and time-resolved fluorescence data reveal that the proton abstraction dynamics of excited FR0-SB depend on the identity of the solvent and that the transfer of the proton from solvent to FR0-SB*, forming FR0-HSB*, fundamentally alters the nature of interactions between the excited molecule and its surroundings. In its unprotonated state, solvent interactions with FR0-SB* are consistent with slip limit behavior, and in its protonated form, intermolecular interactions are consistent with a much stronger interaction of FR0-HSB* with the deprotonated solvent RO. We understand the excited-state population dynamics in the context of a kinetic model involving a transition state wherein FR0-HSB* is still bound to the negatively charged alkoxide, prior to solvation of the two charged species. Data acquired in ethylene glycol confirm the hypothesis that the rotational diffusion dynamics of FR0-SB* are largely mediated by solvent viscosity while proton transfer dynamics are mediated by the lifetime of the transition state. Taken collectively, our results demonstrate that FR0-SB* extracts solvent protons efficiently and in a predictable manner, consistent with a ca. 3-fold increase in dipole moment upon photoexcitation as determined by calculations based on the equation-of-motion coupled-cluster theory.
我们报告了在一系列正醇 C1(甲醇)到 C8(辛醇)和乙二醇中,超光碱 FR0-SB 的动态和质子转移动力学。稳态和时间分辨荧光数据表明,激发态 FR0-SB 的质子提取动力学取决于溶剂的性质,并且质子从溶剂转移到 FR0-SB*,形成 FR0-HSB*,从根本上改变了激发分子与其周围环境之间的相互作用的性质。在其未质子化状态下,溶剂与 FR0-SB的相互作用与滑移极限行为一致,而在其质子化形式下,分子间相互作用与 FR0-HSB与去质子化溶剂 RO 的更强相互作用一致。我们根据涉及过渡态的动力学模型理解激发态粒子数动态,其中 FR0-HSB仍然与带负电荷的烷氧基结合,然后两个带电物质被溶剂化。在乙二醇中获得的数据证实了这样一种假设,即 FR0-SB的旋转扩散动力学主要由溶剂粘度介导,而质子转移动力学由过渡态的寿命介导。总的来说,我们的结果表明,FR0-SB*能够有效地以可预测的方式提取溶剂质子,这与激发态时偶极矩约增加 3 倍的情况一致,这是通过基于运动方程耦合簇理论的计算确定的。