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Design of novel substituted phthalocyanines; synthesis and fluorescence, DFT, photovoltaic properties

The 4-(2-[3,4-dimethoxyphenoxy] phenoxy) phthalonitrile was synthesized as the starting material of new syntheses. Zinc, copper, and cobalt phthalocyanines were achieved by reaction of starting compound with Zn(CH3COO)2, CuCl2, and CoCl2 metal salts. Basic spectroscopic methods such as nuclear magne...

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Autores principales: AĞIRTAŞ, Mehmet Salih, GÜNGÖRDÜ SOLĞUN, Derya, YILDIKO, Ümit, ÖZKARTAL, Abdullah
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Scientific and Technological Research Council of Turkey 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7765769/
https://www.ncbi.nlm.nih.gov/pubmed/33488254
http://dx.doi.org/10.3906/kim-2007-40
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author AĞIRTAŞ, Mehmet Salih
GÜNGÖRDÜ SOLĞUN, Derya
YILDIKO, Ümit
ÖZKARTAL, Abdullah
author_facet AĞIRTAŞ, Mehmet Salih
GÜNGÖRDÜ SOLĞUN, Derya
YILDIKO, Ümit
ÖZKARTAL, Abdullah
author_sort AĞIRTAŞ, Mehmet Salih
collection PubMed
description The 4-(2-[3,4-dimethoxyphenoxy] phenoxy) phthalonitrile was synthesized as the starting material of new syntheses. Zinc, copper, and cobalt phthalocyanines were achieved by reaction of starting compound with Zn(CH3COO)2, CuCl2, and CoCl2 metal salts. Basic spectroscopic methods such as nuclear magnetic resonance electronic absorption, mass and infrared spectrometry were used in the structural characterization of the compounds. Absorption, excitation, and emission measurements of the fluorescence zinc phthalocyanine compound were also investigated in THF. Then, structural, energy, and electronic properties for synthesized metallophthalocyanines were determined by quantum chemical calculations, including the DFT method. The bandgap of HOMO and LUMO was determined to be chemically active. Global reactivity (I, A, η, s, μ, χ, ω) and nonlinear properties were studied. In addition, molecular electrostatic potential (MEP) maps were drawn to identify potential reactive regions of metallophthalocyanine (M-Pc) compounds. Photovoltaic performances of phthalocyanine compounds for dye sensitive solar cells were investigated. The solar conversion efficiency of DSSC based on copper, zinc, and cobalt phthalocyanine compounds was 1.69%, 1.35%, and 1.54%, respectively. The compounds have good solubility and show nonlinear optical properties. Zinc phthalocyanine gave fluorescence emission.
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spelling pubmed-77657692021-01-22 Design of novel substituted phthalocyanines; synthesis and fluorescence, DFT, photovoltaic properties AĞIRTAŞ, Mehmet Salih GÜNGÖRDÜ SOLĞUN, Derya YILDIKO, Ümit ÖZKARTAL, Abdullah Turk J Chem Article The 4-(2-[3,4-dimethoxyphenoxy] phenoxy) phthalonitrile was synthesized as the starting material of new syntheses. Zinc, copper, and cobalt phthalocyanines were achieved by reaction of starting compound with Zn(CH3COO)2, CuCl2, and CoCl2 metal salts. Basic spectroscopic methods such as nuclear magnetic resonance electronic absorption, mass and infrared spectrometry were used in the structural characterization of the compounds. Absorption, excitation, and emission measurements of the fluorescence zinc phthalocyanine compound were also investigated in THF. Then, structural, energy, and electronic properties for synthesized metallophthalocyanines were determined by quantum chemical calculations, including the DFT method. The bandgap of HOMO and LUMO was determined to be chemically active. Global reactivity (I, A, η, s, μ, χ, ω) and nonlinear properties were studied. In addition, molecular electrostatic potential (MEP) maps were drawn to identify potential reactive regions of metallophthalocyanine (M-Pc) compounds. Photovoltaic performances of phthalocyanine compounds for dye sensitive solar cells were investigated. The solar conversion efficiency of DSSC based on copper, zinc, and cobalt phthalocyanine compounds was 1.69%, 1.35%, and 1.54%, respectively. The compounds have good solubility and show nonlinear optical properties. Zinc phthalocyanine gave fluorescence emission. The Scientific and Technological Research Council of Turkey 2020-12-16 /pmc/articles/PMC7765769/ /pubmed/33488254 http://dx.doi.org/10.3906/kim-2007-40 Text en Copyright © 2020 The Author(s) This article is distributed under the terms of the Creative Commons Attribution License ( http://creativecommons.org/licenses/by/4.0/ ), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Article
AĞIRTAŞ, Mehmet Salih
GÜNGÖRDÜ SOLĞUN, Derya
YILDIKO, Ümit
ÖZKARTAL, Abdullah
Design of novel substituted phthalocyanines; synthesis and fluorescence, DFT, photovoltaic properties
title Design of novel substituted phthalocyanines; synthesis and fluorescence, DFT, photovoltaic properties
title_full Design of novel substituted phthalocyanines; synthesis and fluorescence, DFT, photovoltaic properties
title_fullStr Design of novel substituted phthalocyanines; synthesis and fluorescence, DFT, photovoltaic properties
title_full_unstemmed Design of novel substituted phthalocyanines; synthesis and fluorescence, DFT, photovoltaic properties
title_short Design of novel substituted phthalocyanines; synthesis and fluorescence, DFT, photovoltaic properties
title_sort design of novel substituted phthalocyanines; synthesis and fluorescence, dft, photovoltaic properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7765769/
https://www.ncbi.nlm.nih.gov/pubmed/33488254
http://dx.doi.org/10.3906/kim-2007-40
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