Влияние центрального иона металла на люминесцентные и фотофизические параметры фталоцианинов

А. С. Старухин, Алексей Анатольевич Романенко, А. И. Ильин, Виталий Сергеевич Шершень, T.А. Павич, А.О. Савостьянов, И. Ю. Еремчев, Андрей Витальевич Наумов
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Abstract

Based on the data on the spectral and photophysical parameters of the metal complexes of tetraazaporphyrins and phthalocyanines, the effect of the central metal ion on the manifestation of spin-orbit interaction is considered. For complexes of phthalocyanines with Mg(II), Zn(II), Pd(II), and Pt(II) ions, the absorption spectra, luminescence spectra, and luminescence excitation spectra were measured, and the lifetimes and quantum yields of luminescence were determined. It was shown that metal phthalocyanines with Mg(II) and Zn(II) ions, as well as Mg-tetaraazaporphyrin, exhibit intense fluorescence with high quantum yields. For single molecules of Mg-tetaraazaporphyrin in a polymer film at T=6 K, the fluorescence excitation spectra consisting both exclusively of zero-phonon lines and containing phonon wings were measured. A wide distribution of the measured zero-phonon line widths was observed. It is demonstrated, that the introduction of Pd(II) and Pt(II) ions into the center of phthalocyanine macrocycles leads to a decrease in fluorescence and the appearance of intense phosphorescence even at room temperature. Based on measurements of quantum yields of photosensitized generation of singlet molecular oxygen, the quantum yield of interconversion into triplet states for the compounds under study was defined. Deactivation of the lower triplet state of phthalocyanines with Pd(II) and Pt(II) ions indicates the influence of the internal heavy atom effect on the rate of triplet state deactivation at room temperature and at 77 K.
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金属中心离子对荧光和光物理参数的影响
根据四氮卟啉和酞菁金属配合物的光谱和光物理参数数据,考虑了中心金属离子对自旋轨道相互作用表现的影响。测定了酞菁与Mg(II)、Zn(II)、Pd(II)和Pt(II)离子配合物的吸收光谱、发光光谱和激发光谱,并测定了其发光寿命和量子产率。结果表明,含有Mg(II)和Zn(II)离子的金属酞菁以及Mg-四氮卟啉具有强荧光和高量子产率。在T=6 K时,对单分子mg -四氮卟啉在聚合物薄膜中的荧光激发光谱进行了测量,该荧光激发光谱由纯零声子线和含声子翼组成。测量到的零声子线宽分布广泛。结果表明,将Pd(II)和Pt(II)离子引入酞菁大环中心,即使在室温下,也会导致荧光减弱,并出现强烈的磷光。根据光敏生成单线态分子氧的量子产率测量,定义了所研究化合物相互转化为三重态的量子产率。Pd(II)和Pt(II)离子对酞菁低三重态失活的影响表明,在室温和77 K下,内部重原子效应对三重态失活速率的影响。
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