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The new competitive mechanism of hydrogen bonding interactions and transition process for the hydroxyphenyl imidazo 1 2-a pyridine in mixed liquid solution

机译:混合液体溶液中羟苯基咪唑并12-a吡啶的氢键相互作用和过渡过程的新竞争机理

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摘要

The new competitive mechanism of intermolecular and intramolecular hydrogen bond can be proposed with an improved mixed model. Upon the photoinduced process, the twisting intramolecular charge transfer (TICT) structure of the hydroxyphenyl imidazo [1, 2-a] pyridine (HPIP) can be obtained. TICT character prompts the fluorescent inactivation via non-radiative decay process. For exploring the photochemical and photophysical properties, the electronic spectra and the infrared (IR) vibrational spectra of titled compounds have been detailedly investigated. In addition, the frontier molecular orbitals (MOs) analysis visually reveals that the unbalanced electron population can give rise to the torsion of molecular structure. To further give an attractive insight into the non-radiative decay process, the potential energy curves have been depicted on the ground state (S0), the first excited state (S1) and the triple excited state (T1). Minimum energy crossing point (MECP) has been found in the S1 and T1 state. On the MECP, the intersystem crossing (ISC) might be dominant channel. The density functional theory (DFT) and the time-dependent density functional theory (TDDFT) methods have been throughout employed in the S0 state, T1 state and S1 state, respectively. The theoretical results are consistent with experiment in mixed and PCM model.
机译:分子间和分子内氢键的竞争机制可以通过改进的混合模型提出。在光诱导过程中,可以获得羟基苯基咪唑并[1,2-a]吡啶(HPIP)的扭曲分子内电荷转移(TICT)结构。 TICT特性通过非辐射衰变过程促使荧光灭活。为了探索光化学和光物理性质,已详细研究了标题化合物的电子光谱和红外(IR)振动光谱。此外,前沿分子轨道(MOs)分析从视觉上揭示了不平衡的电子种群会引起分子结构的扭曲。为了进一步了解非辐射衰减过程,已在基态(S0),第一激发态(S1)和三重激发态(T1)上绘制了势能曲线。在S1和T1状态下已找到最小能量穿越点(MECP)。在MECP上,系统间交叉(ISC)可能是主要通道。密度泛函理论(DFT)和时变密度泛函理论(TDDFT)方法已分别在S0状态,T1状态和S1状态中被广泛采用。理论结果与混合模型和PCM模型的实验结果吻合。

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