Person: ABDURRAHMANOĞLU, ŞAZİYE
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ABDURRAHMANOĞLU
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ŞAZİYE
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Publication Metadata only Synthesis, characterization and partition coefficients for VOC vapor adsorption onto novel pyridine derivatives Co(II) phthalocyanines(ELSEVIER SCIENCE SA, 2017) ABDURRAHMANOĞLU, ŞAZİYE; Mizrak, Busra; Altindal, Ahmet; Abdurrahmanoglu, SaziyeIn this study, novel pyridine derivatives Co(II) phthalocyanines were synthesized in two steps. In the first step, initial compounds 4-(4-methylpyridin-2-yloxy) phthalonitrile (3) and 3-(4-methylpyridin-2-yloxy) phthalonitrile (3') were prepared by the reaction of 2-hydroxy-4-methyl-pyridin (2) with 4-nitrophthalonitrile (1) and 3-nitrophthalonitrile (17, respectively. In the second step, compounds 3 and 3' reacted with Co(OAc)(2)center dot 4H(2)O to obtain 2(3),9(10),16(17),23(24)-tetrakis[4-methylpyridin-2-yloxylphthalociyaninato cobalt(II) (4) and 1(4),8(11),15(18),22(25)-tetrakis[4-methylpyridin-2-yloxy]phthalociyaninato cobalt(II) (4'). The influence of the substituent position on the organic vapor sensing performance towards 5 different groups of analytes (alkanes, chlorinated hydrocarbons, amines, alcohols and aromatics) were examined. Due to the complex nature of the VOC vapor and phthalocyanine interactions quartz crystal microbalance was used as transducer. Sensors coated by spray deposition technique showed linear dependence on analyte concentration with good reversibility, response and recovery times. Partition coefficient was used as descriptor in order to compare the sensing performance of the compounds. Results showed that the magnitude of the frequency shifts strongly depend on the position of the substituent unit.Publication Metadata only The nonlinear refraction and nonlinear absorption in 4-(4,6-diaminopyrimidin-2-ylthio) substituted double-decker Lu(III) phthalocyanine(PERGAMON-ELSEVIER SCIENCE LTD, 2008) ABDURRAHMANOĞLU, ŞAZİYE; Yaglioglu, H. Guel; Arslan, Metin; Abdurrahmanoglu, Saziye; Unver, Huseyin; Elmali, Ayhan; Bekaroglu, OzerA 4-(4,6-diaminopyrimidin-2-ylthio) substituted double-decker Lu(III) phthalocyanines (4) have been prepared and characterized by elemental analysis, IR, LIV-vis and H-1 NMR spectroscopies. The nonlinear refractive index, nonlinear absorption and the optical limiting (OL) performance of the compound 4 in a 0.5 mm spectroscopic cell in DMF solution were investigated by using 4 ns pulse laser at 532 nm. Z-scan experiments have been conducted between 0.24 and 2.39 GW/cm(2) peak intensities for 10 Hz repetition rate and also between 2.39 and 23.89 GW/cm2 peak intensities for 1 Hz repetition rate. The thermal effect contributes to the nonlinear response of the material higher than 0.72 GW/cm(2) peak intensity at 10 Hz. We measured the effective nonlinear refractive index of the material as 1.2 x 10(-11) esu at 3.5 x 10(-4) M concentration with the peak intensity less than 0.72 GW/cm(2) and we found that nonlinear absorption was very small. On the other hand, when concentration is increased to 2.4 x 10(-3) M material's nonlinear absorption becomes dominant mechanism for the nonlinear response and the compound 4 indicates OL behavior at 2.4 x 10(-3) M concentration. (C) 2007 Elsevier Ltd. All rights reserved.Publication Metadata only Synthesis and Characterization of Novel Zn(II) Dimeric Phthalocyanines(SPRINGER, 2009) ABDURRAHMANOĞLU, ŞAZİYE; Abdurrahmanoglu, Saziye; Bulut, Mustafa; Bekaroglu, Oezer; Sener, BStarting with tetracyanodibenzo(1,4,7,10-tetrathia-(12-crown-4)) (1) and 4-nitro-1,2-dicyanobenzene (2), nitro-substituted dimeric phthalocyanine (3) was synthesized. In the second step, using hydrazine hydrate as a reductant, amine-substituted dimeric phthalocyanine (4) was synthesized from nitro-substituted dimeric phthalocyanine. Structrures of all synthesized compounds were determined by elemental analyses, UV/vis, H-1-NMR and IR spectroscopy.