Journal Article

·2018

Five-nuclear phthalocyanine complex bearing terpyridine zinc complex: Synthesis, and photophysicochemical studies

Pınar Şen , S. Zeki Yıldız , Göknur Yaşa Atmaca YTU , Alı Erdoğmuş YTU

Journal of Porphyrins and Phthalocyanines

Abstract

The context of this study is based on the synthesis of tetrakis{4-(2-([2,2[Formula: see text]:6[Formula: see text],2[Formula: see text]-terpyridine]Zn(II)-4[Formula: see text]-yl(methyl)amino)ethoxy)}phthalocyaninato zinc (II) (3) bearing four terpyridine-Zn(II) complexes that are directly linked through oxygen bridges to the macrocyclic core in order to create new supramolecular assemblies. The target phthalocyanine (3) was obtained by cyclotetramerization reaction of terpyridine-Zn (II) complex substituted phthalonitrile (2). All novel compounds synthesized in this study were fully characterized by general spectroscopic techniques such as FT-IR, UV-vis, and [Formula: see text]H-NMR, [Formula: see text]C-NMR, elemental analysis and mass spectroscopy. Spectral, photophysical (fluorescence quantum yields and lifetimes) and photochemical (singlet oxygen production and photodegradation under light irradiation) properties of newly synthesized phthalonitrile (2) and its phthalocyanine derivative (3) as five nuclear phthalocyanine were investigated in DMSO solutions.

Keywords

Phthalonitrile Terpyridine Chemistry Phthalocyanine Singlet oxygen Supramolecular chemistry Zinc Alkoxy group Context (archaeology) Photochemistry Proton NMR Polymer chemistry Oxygen Organic chemistry Metal Molecule

Subject Areas

Porphyrin and Phthalocyanine Chemistry ·Materials Chemistry ·Physical Sciences
Photodynamic Therapy Research Studies ·Pulmonary and Respiratory Medicine ·Health Sciences
Magnetism in coordination complexes ·Electronic, Optical and Magnetic Materials ·Physical Sciences

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