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Photophysics and spectroscopic properties of zinc phthalocyanine revisited using quantum chemistry

机译:量子化学研究锌酞菁的光物理性质和光谱性质

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摘要

This study provides a theoretical evaluation of the photophysical behavior of zinc phthalocyanine (ZnPc) using density functional theory (DFT) and its time-dependent (TD-DFT) approach, based on the combination of the B3LYP hybrid functional and the 6-311+G(d,p) basis set. The influence of solvation was estimated using IEFPCM (integral equation formalism approach of polarizable continuum model) considering DMSO (dimethyl sulfoxide) as solvent. The simulated absorption spectra were based in the calculation of the first 40 excited states being that the eight most intense peaks could be assigned to the Q and Soret (B) bands. Fluorescence emission wavelength and radiative lifetime were calculated using the TD-DFT approach and compared to experimental data. The ZnPc intersystem crossing (ISC) phenomena was attributed to spin-orbit coupling induced by Zn~(2+) since the adjacent singlet and triplet states have the same orbital symmetry. The phosphorescence data in gas phase were also compared.
机译:这项研究基于密度泛函理论(DFT)及其时变(TD-DFT)方法,结合B3LYP杂合功能和6-311 +,为酞菁锌的光物理行为提供了理论评估G(d,p)基集。使用IEFPCM(可极化连续体模型的积分方程式方法),以DMSO(二甲基亚砜)为溶剂,估计了溶剂化的影响。模拟的吸收光谱是基于前40个激发态的计算得出的,其中八个最强的峰可以分配给Q和Soret(B)谱带。使用TD-DFT方法计算荧光发射波长和辐射寿命,并与实验数据进行比较。由于相邻的单重态和三重态具有相同的轨道对称性,ZnPc系统间穿越(ISC)现象归因于Zn〜(2+)引起的自旋轨道耦合。还比较了气相中的磷光数据。

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