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新型水溶性铟(III)酞菁的合成、光物理及光化学研究

Synthesis, photophysical and photochemical studies of new water-soluble indium(III) phthalocyanines.

作者信息

Durmuş Mahmut, Nyokong Tebello

机构信息

Department of Chemistry, Rhodes University, Grahamstown, 6140, South Africa.

出版信息

Photochem Photobiol Sci. 2007 Jun;6(6):659-68. doi: 10.1039/b618478b. Epub 2007 Feb 15.

Abstract

The preparation of water-soluble indium(III)phthalocyanine complexes is described for the first time in this study. Peripherally and non-peripherally 3-hydroxypyridine tetrasubstituted indium(III) phthalocyanines (5a, 6a) and their quaternarized derivatives (5b, 6b) have been synthesized and characterized by elemental analysis, IR, 1H NMR spectroscopy, electronic spectroscopy and mass spectra. The quaternarized compounds (5b, 6b) show excellent solubility in water, which makes them potential photosensitizers for use in photodynamic therapy (PDT) applications. Photochemical and photophysical measurements were conducted on 3-pyridyloxy appended indium(III) phthalocyanines in dimethylsulfoxide (DMSO) for non-ionic (5a, 6a) and in both DMSO and water for quaternarized (5b, 6b) derivatives. General trends are described for quantum yields of photodegradation, fluorescence lifetimes, fluorescence quantum yields, triplet lifetimes and triplet quantum yields as well as singlet oxygen quantum yields of these compounds. The singlet oxygen quantum yields (Phi(Delta)), which give an indication of the potential of the complexes as photosensitizers in applications where singlet oxygen is required (Type II mechanism) are very high (Phi(Delta) > 0.55). Thus, these complexes may be useful as Type II photosensitizers.

摘要

本研究首次描述了水溶性铟(III)酞菁配合物的制备。已经合成了周边和非周边3-羟基吡啶四取代铟(III)酞菁(5a,6a)及其季铵化衍生物(5b,6b),并通过元素分析、红外光谱、1H核磁共振光谱、电子光谱和质谱进行了表征。季铵化化合物(5b,6b)在水中表现出优异的溶解性,这使其成为光动力疗法(PDT)应用中潜在的光敏剂。对3-吡啶氧基取代的铟(III)酞菁在二甲基亚砜(DMSO)中对非离子型(5a,6a)以及在DMSO和水中对季铵化(5b,6b)衍生物进行了光化学和光物理测量。描述了这些化合物的光降解量子产率、荧光寿命、荧光量子产率、三线态寿命和三线态量子产率以及单线态氧量子产率的一般趋势。单线态氧量子产率(Phi(Delta))表明了配合物在需要单线态氧的应用(II型机制)中作为光敏剂的潜力,非常高(Phi(Delta)>0.55)。因此,这些配合物可用作II型光敏剂。

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