Heo Wooseok, Uddin Nizam, Park Jae Woo, Rhee Young Min, Choi Cheol Ho, Joo Taiha
Department of Chemistry, Pohang University of Science and Technology (POSTECH), Pohang 37673, South Korea.
Phys Chem Chem Phys. 2017 Jul 19;19(28):18243-18251. doi: 10.1039/c7cp01944k.
Detailed molecular dynamics simulations of an acid-base reaction have been the subject of extensive investigations. Here we report the excited state proton transfer dynamics of pyranine (8-hydroxypyrene-1,3,6-trisulfonic acid, HPTS) in acetate buffer by time-resolved fluorescence (TF) and quantum mechanical/effective fragment potential molecular dynamics (QM/EFP-MD) simulations. High time resolution in TF and TF spectra measurements allows the acquisition of accurate reaction kinetics. Upon the photoexcitation of HPTS, the proton (deuterium) is transferred coherently to acetate in 60 fs (80 fs) for a contact pair of HPTS (DPTS) and acetate by a hydrogen bond, which comprises approximately 28% of the population. ESPT proceeds slowly on a picosecond time scale for the remaining HPTS as reported previously. Coherent wave packet motions of the reactant (acid) and the product (conjugate base) enable the acquisition of the vibrational spectra of excited states via TF (VETF). A comparison of the VETFs of the reactant and the product and the calculation of the Huang-Rhys factors (vibrational reorganization energies) identify the vibrational modes that actively participate in the coherent proton transfer. In particular, the 246 cm vibrational mode, which consists of in-plane skeletal stretching motion, promotes the ESPT by transferring the donor oxygen towards the acceptor oxygen in acetate. QM/EFP MD simulations corroborate the experiment and provide molecular details of the ESPT.
酸碱反应的详细分子动力学模拟一直是广泛研究的主题。在此,我们通过时间分辨荧光(TF)和量子力学/有效片段势分子动力学(QM/EFP-MD)模拟,报告了乙酸盐缓冲液中吡喃宁(8-羟基芘-1,3,6-三磺酸,HPTS)的激发态质子转移动力学。TF和TF光谱测量中的高时间分辨率使得能够获取准确的反应动力学。在HPTS光激发后,对于HPTS(DPTS)和乙酸盐的接触对,质子(氘)通过氢键在60飞秒(80飞秒)内相干地转移到乙酸盐中,这大约占总体的28%。如先前报道的那样,对于其余的HPTS,ESPT在皮秒时间尺度上进行得较慢。反应物(酸)和产物(共轭碱)的相干波包运动使得能够通过TF(VETF)获取激发态的振动光谱。反应物和产物的VETF比较以及黄-里斯因子(振动重组能)的计算确定了积极参与相干质子转移的振动模式。特别是由面内骨架拉伸运动组成的246厘米振动模式,通过将供体氧向乙酸盐中的受体氧转移来促进ESPT。QM/EFP MD模拟证实了实验并提供了ESPT的分子细节。