Electrochemical and electrical properties of novel mono and ball-type phthalocyanines
New mononuclear Co(II) and ball-type homobinuclear Cu(II)–Cu(II) and Zn(II)–Zn(II) phthalocyanines were synthesized using the corresponding metal salts and the 4,4′-(methane-5-methyl-3-(1-methylcyclohexyl)-2,2′-phenoxy)diphthalonitrile ligand. The electrochemical measurements showed that the ball-ty...
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Published in: | Polyhedron Vol. 49; no. 1; pp. 129 - 137 |
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Abstract | New mononuclear Co(II) and ball-type homobinuclear Cu(II)–Cu(II) and Zn(II)–Zn(II) phthalocyanines were synthesized using the corresponding metal salts and the 4,4′-(methane-5-methyl-3-(1-methylcyclohexyl)-2,2′-phenoxy)diphthalonitrile ligand. The electrochemical measurements showed that the ball-type Zn2Pc2 forms mixed-valence reduction species, due to strong intramolecular interactions between the two phthalocyanine units. From impedance spectroscopy measurements, it was observed that the bulk resistance of the complexes decreases with increasing temperature, indicating semiconductor properties.
New mononuclear Co(II) phthalocyanine 3 and ball-type homobinuclear Cu(II)–Cu(II) and Zn(II)–Zn(II) phthalocyanines, 4 and 5 respectively, were synthesized using the corresponding metal salts and the 4,4′-(methane-5-methyl-3-(1-methylcyclohexyl)-2,2′-phenoxy)diphthalonitrile ligand 2, which was prepared from the reaction of 4-nitrophthalonitrile with bis[2-hydroxy-5-methyl-3-(1-methylcyclohexyl)phenyl]methane (1). The novel compounds 3–5 have been characterized using their elemental analysis data and UV–Vis, IR, 1H NMR and MALDI-TOF mass spectra. The redox properties of the complexes were investigated by cyclic voltammetry in a non-aqueous medium. The electrochemical measurements showed that complex 5 forms a mixed-valence reduction species, due to the strong intramolecular interactions between the two phthalocyanine rings. Complex 4 displayed Pc ring-based redox signals with very high peak currents, which were attributed to the adsorption of the complex on the working electrode. Dc and ac electrical properties of films of 3, 4 and 5 were also investigated as a function of temperature (295–523K) and frequency (40–105Hz). From the dc conductivity measurements, activation energy values of the films were found, being 0.70, 0.66 and 0.68eV for films of 3, 4 and 5, respectively. From impedance spectroscopy measurements, it was observed that the bulk resistance decreases with increasing temperature, indicating semiconductor properties. |
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AbstractList | New mononuclear Co(II) and ball-type homobinuclear Cu(II)–Cu(II) and Zn(II)–Zn(II) phthalocyanines were synthesized using the corresponding metal salts and the 4,4′-(methane-5-methyl-3-(1-methylcyclohexyl)-2,2′-phenoxy)diphthalonitrile ligand. The electrochemical measurements showed that the ball-type Zn2Pc2 forms mixed-valence reduction species, due to strong intramolecular interactions between the two phthalocyanine units. From impedance spectroscopy measurements, it was observed that the bulk resistance of the complexes decreases with increasing temperature, indicating semiconductor properties.
New mononuclear Co(II) phthalocyanine 3 and ball-type homobinuclear Cu(II)–Cu(II) and Zn(II)–Zn(II) phthalocyanines, 4 and 5 respectively, were synthesized using the corresponding metal salts and the 4,4′-(methane-5-methyl-3-(1-methylcyclohexyl)-2,2′-phenoxy)diphthalonitrile ligand 2, which was prepared from the reaction of 4-nitrophthalonitrile with bis[2-hydroxy-5-methyl-3-(1-methylcyclohexyl)phenyl]methane (1). The novel compounds 3–5 have been characterized using their elemental analysis data and UV–Vis, IR, 1H NMR and MALDI-TOF mass spectra. The redox properties of the complexes were investigated by cyclic voltammetry in a non-aqueous medium. The electrochemical measurements showed that complex 5 forms a mixed-valence reduction species, due to the strong intramolecular interactions between the two phthalocyanine rings. Complex 4 displayed Pc ring-based redox signals with very high peak currents, which were attributed to the adsorption of the complex on the working electrode. Dc and ac electrical properties of films of 3, 4 and 5 were also investigated as a function of temperature (295–523K) and frequency (40–105Hz). From the dc conductivity measurements, activation energy values of the films were found, being 0.70, 0.66 and 0.68eV for films of 3, 4 and 5, respectively. From impedance spectroscopy measurements, it was observed that the bulk resistance decreases with increasing temperature, indicating semiconductor properties. |
Author | Ermiş, Emel Özkaya, Ali Rıza Dumludağ, Fatih Salih, Bekir Bekaroğlu, Özer Çimen, Yasemin |
Author_xml | – sequence: 1 givenname: Emel surname: Ermiş fullname: Ermiş, Emel organization: Department of Chemistry, Anadolu University, 26470 Eskişehir, Turkey – sequence: 2 givenname: Yasemin surname: Çimen fullname: Çimen, Yasemin organization: Department of Chemistry, Anadolu University, 26470 Eskişehir, Turkey – sequence: 3 givenname: Fatih surname: Dumludağ fullname: Dumludağ, Fatih organization: Department of Physics, Marmara University, 34722 Göztepe, Istanbul, Turkey – sequence: 4 givenname: Ali Rıza surname: Özkaya fullname: Özkaya, Ali Rıza organization: Department of Chemistry, Marmara University, 34722 Göztepe, Istanbul, Turkey – sequence: 5 givenname: Bekir surname: Salih fullname: Salih, Bekir organization: Department of Chemistry, Hacettepe University, 06532 Beytepe, Ankara, Turkey – sequence: 6 givenname: Özer surname: Bekaroğlu fullname: Bekaroğlu, Özer email: obek@itu.edu.tr organization: Department of Chemistry, Technical University of Istanbul, 34469 Maslak, Istanbul, Turkey |
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Keywords | Electrochemistry Conductance Ball-type Spectroelectrochemistry Phthalocyanines |
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Snippet | New mononuclear Co(II) and ball-type homobinuclear Cu(II)–Cu(II) and Zn(II)–Zn(II) phthalocyanines were synthesized using the corresponding metal salts and the... |
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SubjectTerms | Ball-type Conductance Electrochemistry Phthalocyanines Spectroelectrochemistry |
Title | Electrochemical and electrical properties of novel mono and ball-type phthalocyanines |
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