Yazar "Ercağ, Ayşe" seçeneğine göre listele
Listeleniyor 1 - 2 / 2
Sayfa Başına Sonuç
Sıralama seçenekleri
Öğe Synthesis, characterization, and investigation of some properties of the new symmetrical bisimine Ni(II), Zn(II), and Fe(III) complexes derived from the monoimine ligand(Wiley, 2021) Portakal, Eylem Dilmen; Kaya, Yeliz; Demirayak, Emire; Yeldir, Elif Karacan; Ercağ, Ayşe; Kaya, İsmetThe new symmetrical bisimine (ONNO donor, salen type) Ni(II), Zn(II), andFe(III) complexes were synthesized in one step from metal ions and mon-oimine ligand (HL: 4-amino-3-{[(2-hydroxynaphthalen-1-yl)methylidene]amino}phenyl)(phenyl)methanone). The complexes were characterized by ana-lytical, spectral, conductance, magnetic, and thermal data. According to theseanalysis results, while the bisimine ligand, spontaneously forming during com-plexation, is attached to the metal by two nitrogen atoms and two phenolicoxygen atoms (N2O2) in all complexes, in the Fe(III) complex, the fifth coordi-nation is completed by the chlorine molecule. A square pyramidal geometryfor [FeLCl] and a square planar geometry for [NiL], [ZnL] were proposed. Thethree-dimensional structure of [FeLC1] was also evaluated by single-crystal X-ray diffraction, and the square pyramidal structure was clearly revealed. Themolar conductivity data of the complexes confirmed their nonelectrolyticnature. Poly(imine) (PL) was obtained by the oxidative polymerization reactionof HL, and some of its properties were investigated. The electrochemical prop-erties of the ligand and the complexes were studied by means of cyclicvoltammetry. Highest and lowest occupied molecular orbital (HOMO-LUMO)energy levels and electrochemical band gaps were calculated. The ther-mogravimetric analysis (TGA) and differential thermal analysis (DTA) of thesynthesized compounds were carried out. TGA results showed that the thermalstability of the complexes is high. The solid-state electrical conductivities of theiodine doped states of the synthesized compounds were measured by the four-point probe technique. PL has approximately 35 times higher electrical con-ductivity than the HL and complexes. Fluorescence-sensor properties of HLwere also investigated and predicted that HL could be a selective fluorescenceprobe for Pb2+Öğe Synthesis, structure analysis, investigation of conductivity, thermal properties of polyphenol derivatives containing a rhodanine moiety and their Cu(II), VO(IV) complexes(Elsevier Science Sa, 2020) Kaya, İsmet; Ercağ, Ayşe; Çulhaoğlu, SüleymanIn this study, 5-benzylidenerhodanine derivatives namely 5-(2-hydroxybenzylidene)-2-thioxothiazolidin-4-one (SAR) and 5((2-hydroxynaphthalen-1-yl)methylene)-2-thioxothiazolidin-4-one (HNAR) used as monomer. The new polymers of SAR and HNAR (PSAR and PHNAR respectively) were synthesized by oxidative polycondensation reaction. The polymers were characterized by elemental, FT-IR, UV-Vis, H-1 NMR,C- 13 NMR, TG-DTA analyses techniques. The molecular weight distribution values of the PSAR and PHNAR were determined by size exclusion chromatography (SEC) analysis. According to the SEC analyses, the number average molecular weight (M-n), weight average molecular weight (M-w) and polydispersity index (PDI) values of PSAR and PHNAR were found to be 5300, 7250 g mol(-1) and 1.368; 5750, 7350 g mol(-1) and 1.278, respectively. The Cu (II), VO (IV) complexes of PSAR and PHNAR (PSAR-Cu and PSAR-VO) were successfully prepared using Cu (AcO)(2)xH(2)O and VOSO(4)x5H(2)O hydrate salts. The polymer-metal-complexes were characterized by FT-IR, elemental and TG-DTA analysis techniques. The weight losses of PHNAR, PHNAR-Cu, PHNAR-VO, PSAR, PSAR-Cu and PSAR-VO were found to be 69.50, 58.50, 62.25, 89.05, 74.55 and 61.75% at 1000 degrees C, respectively. TG analyses were showed to be stable of synthesized polymers against thermal decomposition. Electrical properties of doped polymers, undoped polymers and their complexes were determined. Also, the optical band gaps (Eg) of these complexes were calculated from their absorption edges.