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分离质子隧穿距离对一系列同源酪氨酸碱基模型化合物中质子耦合电子转移的影响。

Isolating the Effects of the Proton Tunneling Distance on Proton-Coupled Electron Transfer in a Series of Homologous Tyrosine-Base Model Compounds.

机构信息

Department of Chemistry-Ångström, Uppsala University , Box 532, SE-751 20, Uppsala, Sweden.

出版信息

J Am Chem Soc. 2017 Feb 8;139(5):2090-2101. doi: 10.1021/jacs.6b12531. Epub 2017 Jan 27.

Abstract

The distance dependence of concerted proton-coupled electron transfer (PCET) reactions was probed in a series of three new compounds, where a phenol is covalently bridged by a 5, 6, or 7 membered carbocycle to the quinoline. The carbocycle bridge enforces the change in distance between the phenol oxygen (proton donor) and quinoline nitrogen (proton acceptor), d, giving rise to values ranging from 2.567 to 2.8487 Å, and resulting in calculated proton tunneling distances, r, that span 0.719 to 1.244 Å. Not only does this series significantly extend the range of distances that has been previously accessible for experimental distance dependent PCET studies of synthetic model compounds, but it also greatly improves the isolation of d as a variable compared to earlier reports. Rates of PCET were determined by time-resolved optical spectroscopy with flash-quench generated [Ru(bpy)] and [Ru(dce)], where bpy = 2,2'-bipyridyl and dce = 4,4'-dicarboxyethylester-2,2'-bipyridyl. The rates increased as d decreased, as can be expected from a static proton tunneling model. An exponential attenuation of the PCET rate constant was found: k(d) = kexp[-β(d - d)], with β ∼ 10 Å. The observed kinetic isotope effect (KIE = k/k) ranged from 1.2 to 1.4, where the KIE was observed to decrease slightly with increasing d. Both β and KIE values are significantly smaller than what is predicted by a static proton tunneling model. We conclude that vibrational compression of the tunneling distances, as well as higher vibronic transitions, that contribute to concerted proton coupled electron transfer must also be considered.

摘要

在一系列三个新化合物中,通过将苯酚通过 5、6 或 7 元碳环共价桥接到喹啉上来研究协同质子耦合电子转移 (PCET) 反应的距离依赖性。碳环桥迫使苯酚氧(质子供体)和喹啉氮(质子受体)之间的距离发生变化,d,导致值范围从 2.567 到 2.8487 Å,并导致计算出的质子隧道距离,r,跨越 0.719 到 1.244 Å。该系列不仅显著扩展了以前可用于实验性距离相关合成模型化合物 PCET 研究的距离范围,而且与早期报告相比,大大改善了 d 作为变量的隔离。通过时间分辨光光谱法用 Flash-Quench 生成的 [Ru(bpy)] 和 [Ru(dce)] 来确定 PCET 的速率,其中 bpy = 2,2'-联吡啶和 dce = 4,4'-二羧酸乙酯-2,2'-联吡啶。可以预期,从静态质子隧道模型来看,随着 d 的减小,PCET 速率增加。发现 PCET 速率常数呈指数衰减:k(d) = kexp[-β(d - d)],其中β∼10 Å。观察到的动力学同位素效应 (KIE = k/k) 范围为 1.2 到 1.4,其中 KIE 随着 d 的增加略有下降。β和 KIE 值均明显小于静态质子隧道模型所预测的值。我们得出结论,必须考虑隧道距离的振动压缩以及协同质子耦合电子转移中贡献的更高振电子跃迁。

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