TDDFT assessment of excited state intramolecular proton transfer in a panel of chromophore 2-hydroxypyrene-1-carbaldehyde

Hui Li, H. Yin, Xiaochun Liu, Ying Shi
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引用次数: 12

Abstract

. Time dependent density functional theory method at the def-TZVP/B3LYP level was employed to investigate excited state intramolecular proton transfer (ESIPT) properties of 2-hydroxypyrene-1-carbaldehyde (HC). Our calculated results of the primary bond lengths and infrared vibrational spectroscopic information show that, upon photoexcitation, the intramolecular hydrogen bond is significantly strengthened in S 1 state, which facilitates the proton transfer process effectively. Furthermore, the electron density distributions of frontier molecular orbitals were demonstrated to be a positive factor for the ESIPT. By the monitor of the characteristic peaks stretching vibration of O-H group in the IR spectra, we have further confirmed the occurrence of ESIPT. The constructed potential energy surface of the S 1 state has also been used to explain the proton transfer process and evaluate the radiationless pathway, indicating that the ESIPT process occurs most easily in HC molecule. at a series of values. The results correlate well with the
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2-羟基-1-乙醛发色团分子内激发态质子转移的TDDFT评价
. 采用时间依赖密度泛函理论方法,在defi - tzvp /B3LYP水平上研究了2-羟基-1-乙醛(HC)激发态分子内质子转移(ESIPT)的性质。我们的主键长度计算结果和红外振动光谱信息表明,在光激发下,分子内氢键在s1态明显加强,有效地促进了质子转移过程。此外,前沿分子轨道的电子密度分布被证明是ESIPT的一个积极因素。通过对红外光谱中O-H基团拉伸振动特征峰的监测,我们进一步证实了ESIPT的存在。构建的s1态势能面也被用来解释质子转移过程和评价无辐射途径,表明ESIPT过程在HC分子中最容易发生。在一系列值处。结果与实验结果相吻合
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Journal of Atomic and Molecular Sciences
Journal of Atomic and Molecular Sciences PHYSICS, ATOMIC, MOLECULAR & CHEMICAL-
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