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Ultrafast Dynamics of Nonequilibrium Electron Transfer in Photoinduced Redox Cycle: Solvent Mediation and Conformation Flexibility

机译:光诱导的氧化还原循环非平衡电子转移的超快动力学:溶剂调解和构象灵活性

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摘要

We report here our systematic characterization of a photoinduced electron-transfer (ET) redox cycle in a covalently linked donor-spacer-acceptor flexible system, consisting of N-acetyl-tryptophan methylester as electron donor and thymine as electron acceptor in three distinct solvents of water, acetonitrile and dioxane. With femtosecond resolution, we determined all the ET time scales, forward and backward, by following the complete reaction evolution from reactants, to intermediates and finally to products. Surprisingly, we observed two distinct ET dynamics in water, corresponding to a stacked configuration with ultrafast ET in 0.7 ps and back ET in 4.5 ps and a partially folded C-clamp conformation with ET in 322 ps but back ET in 17 ps. In acetonitrile and dioxane, only the C-clamp conformations were observed with ET in 470 and 1068 ps and back ET in 110 and 94 ps, respectively. These relatively slow ET dynamics in hundreds of picoseconds all showed significant conformation heterogeneity and followed a stretched decay behavior. With both forward and back ET rates determined, we derived solvent reorganization energies and coupling constants. Significantly, we found that solvent molecules intercalated in the cleft of the C-clamp structure mediate electron transfer with a tunneling parameter (β) of 1.0–1.4 Å−1 and the high-frequency vibration modes in the product(s) couple with the back ET process, leading to the ultrafast back ET dynamics in tens of picoseconds. These findings provide mechanistic insights of nonequilibrium ET dynamics modulated by conformation flexibility, mediated by unique solvent configuration, and accelerated by vibrational coupling.
机译:我们在这里报告我们在共价连接的供体-间隔基-受体柔性系统中的光诱导电子转移(ET)氧化还原循环的系统表征,该系统由N-乙酰基色氨酸甲酯作为电子供体,胸腺嘧啶作为电子受体在三种不同的溶剂中组成水,乙腈和二恶烷。借助飞秒分辨率,我们通过跟踪从反应物到中间物再到最终产物的完整反应过程,确定了所有ET时间尺度,即向前和向后的ET。出乎意料的是,我们在水中观察到两个不同的ET动态,分别是0.7 ps的超快ET和4.5 ps的反向ET以及ET的322 ps的部分折叠C型夹构图和17 ps的反向ET的堆叠结构。在乙腈和二恶烷中,仅在ET和ET分别在470和1068 ps和110 ps和94 ps的条件下观察到C钳构象。数百皮秒内这些相对较慢的ET动态都显示出显着的构象异质性,并遵循伸展的衰变行为。确定了向前和向后的ET速率后,我们得出了溶剂重组能和耦合常数。重要的是,我们发现插入C型夹结构裂缝中的溶剂分子以1.0–1.4Å -1 的隧穿参数(β)以及电子振动的高频振动模式介导了电子转移。产品与反向ET流程相结合,导致数十皮秒内超快速的反向ET动态。这些发现提供了由构象柔性调节,由独特的溶剂构型介导并由振动偶合加速的非平衡ET动力学的机械学见解。

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