Substituent Effects of Porphyrin on Singlet Oxygen Generation Quantum Yields

Fotis Nifiatis
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引用次数: 50

Abstract

The singlet oxygen photosensitizing efficiencies of the ortho-, meta-, and para-substituted free-base and zinc (II) tetraarylporphyrins have been investigated on the basis of the heavy atom effect, electronegativity, and spatial orbital overlap. Both the endocyclic and exocyclic heavy atom effects have been exploited to induce various degrees of spin-orbit coupling. The ground state and the lowest singlet excited electronic state of the porphyrins have been studied using optical absorption and fluorescence emission spectroscopic techniques. The experimental data suggest that implementation of the halogen substituent effect to enhance the photosensitizing properties of a chromophore from the excited triplet state should be done cautiously, as it may have negative implications.
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卟啉取代基对单线态产氧量子产率的影响
基于重原子效应、电负性和空间轨道重叠,研究了邻位、间位和对取代自由碱和锌(II)四芳基卟啉的单线态氧光敏效率。内环和外环重原子效应都被用来诱导不同程度的自旋轨道耦合。利用光学吸收和荧光发射光谱技术研究了卟啉的基态和最低单重态激发态。实验数据表明,利用卤素取代基效应来增强三态激发态发色团的光敏特性应该谨慎进行,因为它可能会产生负面影响。
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