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Öğe Structural, spectroscopic, electronic, nonlinear optical and thermodynamic properties of a synthesized Schiff base compound: A combined experimental and theoretical approach(Elsevier, 2017) Gokce, Halil; Ozturk, Nuri; Kazici, Mehmet; Goreci, Cigdem Yorur; Gunes, SerapA Schiff base compound, 2-[(1H-benzimidazol-2-ylimino)methy1]-4-bromophenol (BISB), was synthesized and its spectroscopic characterization was performed using experimental methods such as FT-IR, Raman, proton and carbon -13 NMR chemical shifts and UV Vis. spectroscopies. Density functional theory (DFT/B3LYP/6-311G(d,p)) computations were used to investigate the optimized molecular geometry, conformational forms, harmonic vibrational wavenumbers, NMR chemical shifts, UV Vis. spectroscopic parameters, natural bond orbital (NBO) analysis, HOMO-LUMO energies, nonlinear optical (NLO) properties, molecular electrostatic potential (MEP) map, atomic charges and thermodynamic properties of the BISB molecule. The assignments of vibrational modes were performed by means of potential energy distribution (PED) using VEDA4 program, The NBO analysis was used to investigate intramolecular hyrogen bonding (O-H center dot center dot center dot N), bond species, hyperconjugation interactions and intramolecular charge transfers (ICTs). Considering the computed HOMO and LUMO energies, the quantum molecular descriptors such as ionization potential (I), electron affinity (A), chemical hardness (eta), chemical softness (zeta), electronegativity (chi), chemical potential (mu) and electrophilicity index (omega) parameters were investigated for the BISB molecule. DFT computations were also performed to determine the dipole moment (mu) the mean polarizability (alpha), the anisotropy of the polarizability (Delta alpha) and the first hyperpolarizability (beta(0)) values. The recorded experimental spectroscopic results are in a good harmony with the computed data. (C) 2017 Elsevier B.V. All rights reserved.Öğe Theoretical and experimental investigations of the 2-(4-chlorophenyl)-3-{[5-(2-cyano-2-phenylethenyl)]furan-2-yl}acrylonitrile molecule as a potential acceptor in organic solar cells(Iop Publishing Ltd, 2016) Kazici, Mehmet; Bozar, Sinem; Yuksel, Sureyya Aydin; Ongul, Fatih; Gokce, Halil; Gunes, Serap; Goreci, Cigdem YorurA novel soluble asymmetric acrylonitrile derivative, 2-(4-Chlorophenyl)-3-{[5-(2-cyano-2-phenylethenyl)]furan-2-yl}acrylonitrile (CPCPFA, 3) was synthesized in three steps by Knoevenagel condensation. The structure of the CPCPFA was characterized using UV-vis, FTIR, H-1 NMR, C-13 NMR, and LC-MS. CPCPFA was evaluated as an electron acceptor in bulk heterojunction organic solar cells. Its optical and electronic properties as well as photovoltaic performance were investigated.