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苯甲醛分子间氢键对荧光增强的理论研究。

Theoretical Studies on the Fluorescence Enhancement of Benzaldehydes by Intermolecular Hydrogen Bonding.

机构信息

Key Laboratory of Materials Modification by Laser, Electron, and Ion Beams, Dalian University of Technology , Ministry of Education , Dalian 116024 , China.

出版信息

J Phys Chem B. 2019 Jan 31;123(4):884-890. doi: 10.1021/acs.jpcb.8b10271. Epub 2019 Jan 16.

Abstract

Density functional theory and its time-dependent extension are employed to investigate the intermolecular hydrogen-bonding- (Inter-HB-) induced fluorescence enhancement of benzaldehydes. The fluorescence quenching mechanism of benzaldehydes in chloroform is attributed to the low energy gap between the lowest ππ* and nπ* states at Franck-Condon (FC) point and conical interaction between ππ* and nπ* states. The Inter-HB between the aldehyde group of benzaldehydes and methanol can considerably increase the energy gap between ππ* and nπ* states at the FC point, and this type of hydrogen bond is strengthened in the excited ππ* state, thereby precluding the nonradiative transition from nπ* state and enhancing fluorescence. The Inter-HB between the hydroxy group of benzaldehydes and methanol is considerably stronger than that between the aldehyde group of benzaldehydes and methanol; which has a little effect on the energy gap of ππ* and nπ* states. Therefore, if Inter-HB exists between the hydroxy group of benzaldehydes and methanol, then it will play an important role in ground and excited ππ* states, and fluorescence enhancement by Inter-HB between the aldehyde group of benzaldehydes and methanol will be absent. Our proposed mechanism can explain the experimental observations and differs from that of "proximity effects".

摘要

采用密度泛函理论及其时间相关拓展研究了苯甲醛分子间氢键(Inter-HB)诱导的荧光增强。苯甲醛在氯仿中荧光猝灭的机制归因于 Franck-Condon(FC)点处最低的 ππ和 nπ态之间的低能量间隙和 ππ和 nπ态之间的锥形相互作用。苯甲醛醛基与甲醇之间的 Inter-HB 可以显著增加 FC 点处 ππ和 nπ态之间的能隙,这种氢键在激发的 ππ态中得到增强,从而阻止了来自 nπ态的非辐射跃迁并增强了荧光。苯甲醛羟基与甲醇之间的 Inter-HB 比苯甲醛醛基与甲醇之间的 Inter-HB 强得多;它对 ππ和 nπ态的能隙影响不大。因此,如果苯甲醛的羟基之间存在 Inter-HB,那么它将在基态和激发态的 ππ*态中发挥重要作用,而苯甲醛醛基之间的 Inter-HB 引起的荧光增强将不存在。我们提出的机制可以解释实验观察结果,与“近邻效应”不同。

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