Gamiz-Hernandez Ana P, Magomedov Artiom, Hummer Gerhard, Kaila Ville R I
Department Chemie, Technische Universität München (TUM) Lichtenbergstraße 4, D-85747 Garching, Germany.
J Phys Chem B. 2015 Feb 12;119(6):2611-9. doi: 10.1021/jp508790n. Epub 2015 Jan 12.
Proton-coupled electron transfer (PCET) processes are elementary chemical reactions involved in a broad range of radical and redox reactions. Elucidating fundamental PCET reaction mechanisms are thus of central importance for chemical and biochemical research. Here we use quantum chemical density functional theory (DFT), time-dependent density functional theory (TDDFT), and the algebraic diagrammatic-construction through second-order (ADC(2)) to study the mechanism, thermodynamic driving force effects, and reaction barriers of both ground state proton transfer (pT) and photoinduced proton-coupled electron transfer (PCET) between nitrosylated phenyl-phenol compounds and hydrogen-bonded t-butylamine as an external base. We show that the obtained reaction barriers for the ground state pT reactions depend linearly on the thermodynamic driving force, with a Brønsted slope of 1 or 0. Photoexcitation leads to a PCET reaction, for which we find that the excited state reaction barrier depends on the thermodynamic driving force with a Brønsted slope of 1/2. To support the mechanistic picture arising from the static potential energy surfaces, we perform additional molecular dynamics simulations on the excited state energy surface, in which we observe a spontaneous PCET between the donor and the acceptor groups. Our findings suggest that a Brønsted analysis may distinguish the ground state pT and excited state PCET processes.
质子耦合电子转移(PCET)过程是广泛参与自由基和氧化还原反应的基本化学反应。因此,阐明基本的PCET反应机制对化学和生化研究至关重要。在此,我们使用量子化学密度泛函理论(DFT)、含时密度泛函理论(TDDFT)以及二阶代数图示构建法(ADC(2))来研究亚硝基化苯基苯酚化合物与作为外部碱的氢键叔丁胺之间基态质子转移(pT)和光致质子耦合电子转移(PCET)的反应机制、热力学驱动力效应及反应势垒。我们表明,基态pT反应的反应势垒与热力学驱动力呈线性关系,布朗斯特斜率为1或0。光激发导致PCET反应,我们发现激发态反应势垒与热力学驱动力有关,布朗斯特斜率为1/2。为了支持由静态势能面得出的机理图景,我们在激发态势能面上进行了额外的分子动力学模拟,在此模拟中我们观察到供体和受体基团之间的自发PCET。我们的研究结果表明,布朗斯特分析可能区分基态pT和激发态PCET过程。