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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Puzzle of the Intramolecular Hydrogen Bond of Dibenzoylmethane Resolved by Molecular Dynamics Simulations
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Puzzle of the Intramolecular Hydrogen Bond of Dibenzoylmethane Resolved by Molecular Dynamics Simulations

机译:分子动力学模拟分子分解二苯甲酰甲烷的分子内氢键的难题

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The enol form of dibenzoylmethane has been the subject of many experimental and theoretical studies, yet the symmetry and the spectral response of the OHO intramolecular hydrogen bond remains mysterious due to conflicting assignments. In order to qualitatively understand the complex proton dynamics, it is necessary to probe the neighborhood of stationary points on the potential energy landscape. Here, we employ density functional theory-based molecular dynamics (DFT-MD) simulations to sample the coupling between the intermolecular proton transfer and all other molecular modes. To account for the quantum nature of the proton motion, we employ the path integral formalism within the DFT-MD simulations. Our results reveal that the hydrogen-bonded proton is delocalized between two oxygen atoms with sightly higher probability to be observed in the asymmetric than the symmetric position. The simulated infrared spectrum is found to be in a reasonably good agreement with the experimental spectrum. The computed nu(OH) band is remarkably broad and centered around 2640 cm(-1). The origin of the discrepancy between the simulated and experimental intensities of the nu(OH) band is discussed.
机译:二苯甲酰甲烷的烯醇形式一直是许多实验和理论研究的主题,然而,OHO分子内氢键的对称性和光谱响应由于矛盾的任务而仍然是神秘的。为了定性地了解复杂的质子动态,有必要探测潜在能量景观的静止点附近。这里,我们采用密度泛函理论的分子动力学(DFT-MD)模拟,以对分子间质子转移和所有其他分子模式的耦合进行采样。要考虑质子运动的量子性质,我们采用DFT-MD模拟中的路径整体形式主义。我们的结果表明,在两个氧原子之间的氢键键合质子在不对称位置观察到的两个氧原子之间的缺席。发现模拟的红外光谱与实验频谱相当好的协议。计算的Nu(OH)频带非常宽,居中约2640厘米(-1)。讨论了NU(OH)频带的模拟和实验强度之间的差异的起源。

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