Academic literature on the topic 'Metallophtalocyanine'

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Journal articles on the topic "Metallophtalocyanine"

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Osugi, Marli E., Gisela A. Umbuzeiro, Marc A. Anderson, and Maria Valnice B. Zanoni. "Degradation of metallophtalocyanine dye by combined processes of electrochemistry and photoelectrochemistry." Electrochimica Acta 50, no. 25-26 (September 2005): 5261–69. http://dx.doi.org/10.1016/j.electacta.2005.01.058.

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Díaz-García, M. A., A. Dogariu, D. J. Hagan, and E. W. Van Stryland. "Nonlinear absorption of soluble octasubstituted metallophtalocyanines at 1.064 μm." Chemical Physics Letters 266, no. 1-2 (February 1997): 86–90. http://dx.doi.org/10.1016/s0009-2614(96)01537-0.

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Cruz-Navarro, J. Antonio, Fabiola Hernández-García, Luis Humberto Mendoza-Huizar, Verónica Salazar-Pereda, J. Ángel Cobos-Murcia, Raúl Colorado-Peralta, and Giaan Arturo Álvarez-Romero. "Recent Advances in the Use of Transition-Metal Porphyrin and Phthalocyanine Complexes as Electro-Catalyst Materials on Modified Electrodes for Electroanalytical Sensing Applications." Solids 2, no. 2 (May 6, 2021): 212–31. http://dx.doi.org/10.3390/solids2020014.

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Metalloporphyrins (MP) and metallophtalocyanines (MPc) are innovative materials with catalytic properties that have attracted attention for their application for diverse electrochemical purposes. The presence of metallic centers in their structure offers a redox-active behavior that is being applied in the design of solid electrodes for the quantification of biomolecules, water contaminants, and pharmaceuticals, among others. Herein, we collect the recent information about porphyrin and phthalocyanine complexes as modifiers of electrodes, and the important aspects of the design, characterization, and application of these electrodes.
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Starukhin, A., V. Knyukshto, A. Gorski, V. Chernii, I. Tretyakova, M. Kijak, and P. Kowalska. "Spectral manifestation of substitution of out-of-plane ligands in metallophtalocyanines." EPJ Web of Conferences 132 (December 13, 2016): 03044. http://dx.doi.org/10.1051/epjconf/201713203044.

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Zahou, I., R. Ben Chaabane, R. Mlika, S. Touaiti, B. Jamoussi, and H. Ben Ouada. "Optical and electrical properties of novel peripherally tetra and mono -quinoleinoxy substituted metallophtalocyanines." Journal of Materials Science: Materials in Electronics 25, no. 7 (April 29, 2014): 2878–88. http://dx.doi.org/10.1007/s10854-014-1955-6.

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Dissertations / Theses on the topic "Metallophtalocyanine"

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Loos, Michel. "Contribution au développement des spectroscopies d'absorption et d'excitation X : application à l'étude structurale des espèces catalytiques actives dans un procédé industriel d'oxychloration de l'éthylène." Nancy 1, 1990. http://www.theses.fr/1990NAN10483.

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Ce mémoire est consacré à l'étude par les spectroscopies d'absorption X d'espèces catalytiques actives dans un procédé industriel. Dans une première partie sont détaillées les bases théoriques, les dispositifs expérimentaux et les algorithmes de calcul utilisés. Dans une seconde partie sont présentés les résultats de l'étude structurale des espèces catalytiques actives dans un procédé industriel d'oxychloration de l'éthylène. La dernière partie est consacrée à diverses études sur des métalloporphyrines et des métallophtalocyanines. Cette partie comprend également une étude structurale des composés du vanadium pouvant se former sur les catalyseurs d'hydrodémétallation des fractions pétrolières lourdes
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Britton, Jonathan. "Nonlinear optical studies of metallophtalocyanines and hemiporphyrazines in solution." Thesis, Rhodes University, 2014. http://hdl.handle.net/10962/d1011608.

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This thesis presents the study of the effects of CdTe-TGA quantum dots (QDs) on optical limiting ability of different phthalocyanine (Pc) complexes (5-12) containing Zn, Ga, In central metals and substituted with benzyloxyphenoxy, phenoxy, tertbutylphenoxy and amino groups in solution and in poly (methyl methacrylate) (PMMA) films. The optical limiting parameters of Pcs were higher for tertbutylphenoxy when compared to benzyloxyphenoxy and phenoxy substituents, in DMSO. Non-peripheral substitution decreased the optical limiting parameters. Third-order susceptibility (Im[χ⁽³⁾]/α) values of Pcs in the absence and presence of CdTe QDs were in the 10⁻¹² to 10⁻¹° esu cm range. Hyperpolarizabilities (γ) ranged from 10⁻³¹ to 10⁻²⁹ esu L for Pc alone or in mixture with QDs. The effect on the optical limiting abilities of twelve embedded phthalocyanines containing In, Ga, Zn and Al as central metals in polymer thin films was also examined. The effect of forming a covalent link zinc tetraamino phthalocyanine (12) with poly (methyl acrylic acid) (PMAA) and Zn (13) and OHAl (14) octacarboxy phthalocyanines to polyethylenimine (PEI) was also studied. The hyperpolarizability of the twelve phthalocyanines in polymer was found to be in the range of 10⁻²⁶ to 10⁻²⁴ esu.L. This is significantly higher than the hyperpolarizabilities of these phthalocyanines in solution. Non-linear optical (NLO) parameters were determined for phthalocyanine complexes containing In, Ga and Zn as central metals when embedded in PMMA polymer in the presence of quantum dots (QDs). The QDs mainly employed were CdTe-TGA (TGA = thioglylcolic acid). Triplet lifetimes increased as k (excited state (σex) to ground state (σg) absorption cross section ratio) values decreased with the addition of the CdTe-TGA to the phthalocyanines. The saturation energy density (Fsat) values were smaller in the films when compared to the solutions. Complex 7 tetrasubstituted with tert-butylphenoxy groups at non-peripheral positions was also studied in the presence of CdS-TGA, CdSe-TGA, fullerenes and single walled carbon nanotubes. There is a general improvement in optical limiting ability of Pc complexes in the presence of nanomaterials (NMs). Degradation studies seem to indicate that placing a phthalocyanine within a polymer thin film may protect it slightly from photo- and thermal degradation. 3(4), 15(16)-Bis-(4 -tert-butyl-phenoxy)-10, 22-diaminohemiporphyrazinato chloroindium hemiporphyrazine was synthesized from 1, 3, 5-triaminobenzene and 4-tert-butyl-phenoxyisoindoline. The structure of the complex was confirmed using mass, nuclear magnetic resonance and infrared spectroscopies. The nonlinear parameters of the compound was also analyzed in dimethylformamide and found to be significantly greater than previously analyzed phthalocyanines.
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Conference papers on the topic "Metallophtalocyanine"

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Chakane, Sanjay D. S., Shilpa Jain, and S. V. Bhoraskar. "Synthesis, characterization, and humidity sensing of metallophtalocyanines." In Smart Materials and MEMS, edited by Dinesh K. Sood, Ronald A. Lawes, and Vasundara V. Varadan. SPIE, 2001. http://dx.doi.org/10.1117/12.420871.

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