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孤对电子-π相互作用和π-π相互作用在质子耦合电子转移反应中起着重要作用。

Lone pair-pi and pi-pi interactions play an important role in proton-coupled electron transfer reactions.

作者信息

DiLabio Gino A, Johnson Erin R

机构信息

National Institute for Nanotechnology, National Research Council of Canada, 11421 Saskatchewan Drive, Edmonton, Alberta, Canada T6G 2M9.

出版信息

J Am Chem Soc. 2007 May 16;129(19):6199-203. doi: 10.1021/ja068090g. Epub 2007 Apr 20.

Abstract

Proton-coupled electron transfer (PCET), a class of formal hydrogen atom transfer (HAT) reactions, is of widespread interest because it is implicated in a broad range of chemical and biochemical processes. PCET is typically differentiated from HAT by the fact that it occurs when a proton and electron are transferred between different sets of molecular orbitals. Previous theoretical work predicted that hydrogen bonding between reactants is a necessary but not sufficient condition for H exchanges to take place by PCET. This implies that HAT is the only mechanism for H exchange between two carbon atoms. In this work, we present computational results that show that the H exchange in the tert-butylperoxyl/phenol couple, a prototypical antioxidant exchange reaction, occurs by PCET and that the transfer of the electron can occur via an oxygen lone pair-ring pi overlap. We then show that the H exchange in a model for the tyrosyl/tyrosine couple, which is implicated in ribonucleotide reductase chemistry, occurs via PCET and that one path for the electron transfer is provided by a strong pi-stacking interaction. Finally, we show that a pi-stacking interaction in the benzyl/toluene couple, a system in which there is no H-bonding, can result in this exchange occurring via PCET to some extent. Collectively, these results indicate that PCET reactions are not unique to systems that can engage in H-bonding and that lone pair-pi and pi-pi interactions in these systems may be more important than previously understood.

摘要

质子耦合电子转移(PCET)是一类形式上的氢原子转移(HAT)反应,因其涉及广泛的化学和生物化学过程而备受关注。PCET通常与HAT的区别在于,它发生在质子和电子在不同的分子轨道组之间转移时。先前的理论工作预测,反应物之间的氢键是通过PCET进行氢交换的必要但不充分条件。这意味着HAT是两个碳原子之间氢交换的唯一机制。在这项工作中,我们展示的计算结果表明,叔丁基过氧自由基/苯酚对中的氢交换(一种典型的抗氧化剂交换反应)是通过PCET发生的,并且电子转移可以通过氧孤对-环π重叠发生。然后我们表明,参与核糖核苷酸还原酶化学过程的酪氨酰/酪氨酸对模型中的氢交换是通过PCET发生的,并且电子转移的一条途径是由强π堆积相互作用提供的。最后,我们表明在苄基/甲苯对中(一个不存在氢键的体系)的π堆积相互作用可以在一定程度上导致这种交换通过PCET发生。总的来说,这些结果表明PCET反应并非仅限于能够形成氢键的体系,并且这些体系中的孤对-π和π-π相互作用可能比之前所理解的更为重要。

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