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溶剂化苯酚 - 胺络合物中光诱导质子耦合电子转移的非绝热动力学

Nonadiabatic dynamics of photoinduced proton-coupled electron transfer in a solvated phenol-amine complex.

作者信息

Goyal Puja, Schwerdtfeger Christine A, Soudackov Alexander V, Hammes-Schiffer Sharon

机构信息

Department of Chemistry, 600 South Mathews Avenue, University of Illinois at Urbana-Champaign , Urbana, Illinois 61801, United States.

出版信息

J Phys Chem B. 2015 Feb 12;119(6):2758-68. doi: 10.1021/jp5126969. Epub 2015 Jan 8.

Abstract

Photoinduced concerted electron-proton transfer (EPT), denoted photo-EPT, is important for a wide range of energy conversion processes. Transient absorption and Raman spectroscopy experiments on the hydrogen-bonded p-nitrophenylphenol-t-butylamine complex, solvated in 1,2-dichloroethane, suggested that this complex may undergo photo-EPT. The experiments probed two excited electronic states that were interpreted as an intramolecular charge transfer (ICT) state and an EPT state. Herein mixed quantum mechanical/molecular mechanical nonadiabatic surface hopping dynamics is used to investigate the relaxation pathways following photoexcitation. The potential energy surface is generated on the fly with a semiempirical floating occupation molecular orbital complete active space configuration interaction method for the solute molecule and a molecular mechanical force field for the explicit solvent molecules. The free energy curves along the proton transfer coordinate illustrate that proton transfer is thermodynamically and kinetically favorable on the lower-energy excited state but not on the higher-energy excited state, supporting the characterization of these states as EPT and ICT, respectively. The nonadiabatic dynamics simulations indicate that the population decays from the ICT state to the EPT state in ∼100 fs and from the EPT state to the ground state on the slower time scale of ∼1 ps, qualitatively consistent with the experimental measurements. For ∼54% of the trajectories, the proton transfers from the phenol to the amine in ∼400 fs on the EPT state and then transfers back to the phenol rapidly upon decay to the ground state. Thus, these calculations augment the original interpretation of the experimental data by providing evidence of proton transfer on the EPT state prior to decay to the ground state. The fundamental insights obtained from these simulations are also relevant to other photo-EPT processes.

摘要

光致协同电子-质子转移(EPT),即光-EPT,对广泛的能量转换过程至关重要。在1,2-二氯乙烷中溶剂化的氢键对硝基苯基苯酚-叔丁胺络合物上进行的瞬态吸收和拉曼光谱实验表明,该络合物可能会发生光-EPT。实验探测了两个激发电子态,分别被解释为分子内电荷转移(ICT)态和EPT态。本文采用混合量子力学/分子力学非绝热表面跳跃动力学来研究光激发后的弛豫途径。通过半经验浮动占据分子轨道完全活性空间构型相互作用方法为溶质分子生成势能面,并为明确的溶剂分子使用分子力学力场。沿质子转移坐标的自由能曲线表明,质子转移在较低能量激发态上在热力学和动力学上是有利的,但在较高能量激发态上则不然,这分别支持了将这些状态表征为EPT和ICT。非绝热动力学模拟表明,布居在约100飞秒内从ICT态衰减到EPT态,并在约1皮秒的较慢时间尺度上从EPT态衰减到基态,这与实验测量结果定性一致。对于约54%的轨迹,质子在EPT态上约400飞秒内从苯酚转移到胺,然后在衰减到基态时迅速转移回苯酚。因此,这些计算通过提供在衰减到基态之前EPT态上质子转移的证据,增强了对实验数据的原始解释。从这些模拟中获得的基本见解也与其他光-EPT过程相关。

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