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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Hydrogen Bonding and Intermolecular Vibration of 6-Hydroxyquinoline·H_2O in the S_0 and S_1 States
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Hydrogen Bonding and Intermolecular Vibration of 6-Hydroxyquinoline·H_2O in the S_0 and S_1 States

机译:S_0和S_1状态下6-羟基喹啉·H_2O的氢键键合和分子间振动

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A combined spectroscopic and ab initio theoretical study of the hydrogen-bonded 6-hydroxyquinoline·H_2O complex was performed. 6-Hydroxyquinoline (6-HQ) is bifunctional, acting as an H-bond donor at the O-H group and as an acceptor at the N atom in bulk aqueous solution. Excited-state proton transfer (ESPT) from 6-HQ to the solvent occurs adiabatically in the S_1 state, involving proton transfer at both functional groups. We have measured the mass- and rotamer-resolved S_1 → S_0 vibronic spectra of cis- and trans rotamers of 6-HQ and of both the cis- and trans-6-HQ·H_2O complexes in supersonic jets, using two-color resonant two-photon ionization spectroscopy and UV/UV spectral hole-burning techniques. Following the identification of the cis and trans rotamer electronic origins, dispersed fluorescence emission spectra of both rotamers of 6-HQ and 6-HQ·H_2O were measured. The results are consistent with H_2O bonded exclusively to the hydroxyl group and not to the N atom. Equilibrium structures were calculated by ab initio SCF methods for both rotamers of 6-HQ and both the cis- and trans-6-HO·H_2O complexes and give C_s symmetric structures with trans-linear hydrogen bonds. The calculated torsional transition states for H atom exchange on the H_2O subunit are nonplanar with C_1 symmetry. The calculated H-bond dissociation energies are ≈ 5.9 kcal/mol for the cis and ≈ 6.0 kcal/mol trans rotamer, slightly stronger than those of 2-naphthol·H_2O (5.8 kcal/mol) and phenol·H_2O (5.6 kcal/mol). Harmonic normal-mode frequencies allow detailed assignments of the observed inter- and intramolecular vibronic transitions. Agreement between theory and experiments is generally good, with the exception of the β_2 wag mode.
机译:进行了结合氢的6-羟基喹啉·H_2O配合物的光谱学和从头算的理论研究。 6-羟基喹啉(6-HQ)是双官能团,在本体水溶液中充当O-H基团的H键供体,并充当N原子的受体。从6-HQ到溶剂的激发态质子转移(ESPT)在S_1状态下绝热发生,涉及两个官能团的质子转移。我们使用双色共振两种方法,测量了超声速喷射中6-HQ的顺式和反式旋转异构体以及顺式和反式-6-HQ·H_2O络合物的顺式和反式旋转异构体的S_1→S_0振动质谱。 -光子电离光谱和UV / UV光谱烧孔技术。在确定了顺式和反式旋转异构体的电子起源之后,测量了6-HQ和6-HQ·H_2O两种旋转异构体的分散荧光发射光谱。结果与仅与羟基而不是与N原子键合的H_2O一致。通过从头算SCF方法计算6-HQ的旋转异构体以及顺式和反式-6-HO·H_2O络合物的平衡结构,并给出具有反式线性氢键的C_s对称结构。计算的H_2O亚基上H原子交换的扭转跃迁状态是非平面的,具有C_1对称性。计算得出的顺式H键解离能约为5.9 kcal / mol,反式旋转异构体约为6.0 kcal / mol,比2-萘酚·H_2O(5.8 kcal / mol)和苯酚·H_2O(5.6 kcal / mol)略强。 )。谐波正常模式频率允许对观察到的分子间和分子内振动的详细分配。理论和实验之间的一致性通常很好,除了β_2wag模式。

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