An investigation of excited-state intramolecular proton transfer mechanism of new chromophore

Yanling Cui, Pengyu Li, Jing Wang, P. Song, Lixin Xia
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引用次数: 22

Abstract

Based on the time-dependent density functional theory (TDDFT), the excited state intramolecular proton transfer (ESIPT) mechanism of a new compound 1 chromophore synthesized and designed by Liu et al. [Journal of Photochemistry and Photobiology B: Biology., 138 (2014), 75-79] has been investigated theoretically. The calculations of primary bond lengths, angles and the IR vibrational spectra verified the intramolecular hydrogen bond was strengthened. The fact that reproducing the experimental absorbance and fluorescence emission spectra well theoretically demonstrates that the TDDFT theory we adopted is reasonable and effective. In addition, intramolecular charge transfer based on the frontier molecular orbitals demonstrated the indication of the ESIPT reaction. The constructed potential energy curves of ground state and the first excited state based on keeping the O-H distance fixed at a serious of values have been used to illustrate the ESIPT process. A little barrier of 2.45 kcal/mol in the first excited state potential energy curve provided the transfer mechanism. Further, the phenomenon of fluorescence quenching has been explained reasonably based on the ESIPT mechanism. PACS: 31.25.Jf; 82.39.Jn
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新发色团分子内激发态质子转移机理的研究
基于时间依赖密度泛函理论(TDDFT), Liu等合成并设计了一种新的化合物1发色团的激发态分子内质子转移(ESIPT)机制[j] .光化学与光生物学学报B:生物学版。, 138(2014), 75-79]的理论研究。主键长度、键角和红外振动谱的计算证实了分子内氢键的增强。理论上较好地再现了实验吸光度和荧光发射光谱,证明了我们所采用的TDDFT理论是合理有效的。此外,基于分子前沿轨道的分子内电荷转移显示了ESIPT反应的指示性。在保持O-H距离固定在一系列值的基础上,构造了基态和第一激发态的势能曲线来说明ESIPT过程。第一激发态势能曲线上2.45 kcal/mol的小势垒提供了传递机理。进一步,基于ESIPT机理对荧光猝灭现象进行了合理的解释。pac: 31.25.Jf;82.39.Jn
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Journal of Atomic and Molecular Sciences
Journal of Atomic and Molecular Sciences PHYSICS, ATOMIC, MOLECULAR & CHEMICAL-
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