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首页> 外文期刊>Computational & theoretical chemistry >Density functional theory (DFT) and natural bond orbital (NBO) investigation of intramolecular hydrogen bond interaction and excited-state intramolecular proton transfer (ESIPT) reaction in a five-membered hydrogen-bonding system 2-(1H-pyrazol-5-yl)pyridine: On the possibility of solvent (water)-assisted ESPT
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Density functional theory (DFT) and natural bond orbital (NBO) investigation of intramolecular hydrogen bond interaction and excited-state intramolecular proton transfer (ESIPT) reaction in a five-membered hydrogen-bonding system 2-(1H-pyrazol-5-yl)pyridine: On the possibility of solvent (water)-assisted ESPT

机译:五元氢键系统2-(1H-吡唑-5-基)中分子内氢键相互作用和激发态分子内质子转移(ESIPT)反应的密度泛函理论(DFT)和自然键轨道(NBO)研究吡啶:关于溶剂(水)辅助的ESPT的可能性

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The present work aims at exploring the excited-state intramolecular proton transfer (ESIPT) reaction in a five-member hydrogen bonding ring system, viz., 2-(1H-pyrazol-5-yl)pyridine (2Pz–5Py), in which the ESIPT process is found to be associated with an appreciably large barrier, on the lexicon of a Density Functional Theory (DFT)-based computational approach. Nevertheless the feasibility of ESIPT has been argued from the changeover of relative stability patterns of the enol (E) and the proton-transferred (PT) forms on photoexcitation from the S_0-PES to the S_1-PES. Critical evaluation on the modulations of geometrical parameters other than the PT reaction coordinate has also been undertaken. The intramolecular hydrogen bonding (I_raMHB) interaction in 2Pz–5Py has been explored by calculation of the hyperconjugative charge transfer interaction from the lone electron pair of ring nitrogen atom to the σ~? orbital of N–H bond, under the provision of Natural Bond Orbital (NBO) analysis. Further, we have also endeavoured to cast light on the important issue of water-mediated ESPT in 2Pz–5Py. Apart from examining the impact of water mediacy on the barrier for ESPT process, the substantial influence of the solvent (water) reaction field on the energetic and geometric aspects of the molecule are also explored through calculations based on polarizable continuum model (PCM). Again the applicability of NBO analysis has been extended to characterize the nature and strength of IMHB in the hydrated cluster of 2Pz–5Py. The directional nature of hydrogen bonding interaction is also unveiled at this juncture.
机译:目前的工作旨在探索在五元氢键环系统中的激发态分子内质子转移(ESIPT)反应,即2-(1H-吡唑-5-基)吡啶(2Pz-5Py),其中在基于密度泛函理论(DFT)的计算方法的词典中,发现ESIPT过程与一个相当大的障碍相关。然而,从S_0-PES到S_1-PES的光激发,烯醇(E)和质子转移(PT)形式的相对稳定性模式的转变已经证明了ESIPT的可行性。还对除PT反应坐标以外的几何参数的调制进行了严格的评估。通过计算从环氮原子的孤电子对到σ〜?的超共轭电荷转移相互作用,探索了2Pz-5Py中的分子内氢键(I_raMHB)相互作用。根据自然键轨道(NBO)分析提供的N–H键轨道。此外,我们还致力于阐明2Pz-5Py中水介导的ESPT的重要问题。除了研究水介质对ESPT过程的势垒的影响外,还通过基于可极化连续体模型(PCM)的计算,探索了溶剂(水)反应场对分子的能量和几何方面的重大影响。同样,NBO分析的适用性已扩展到表征2Pz-5Py水合簇中IMHB的性质和强度。氢键相互作用的方向性在这一时刻也被揭示。

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