Hande Petek
Ondokuz Mayıs University
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Publication
Featured researches published by Hande Petek.
Journal of Molecular Modeling | 2011
Hasan Karabıyık; Resul Sevinçek; Hande Petek; Muhittin Aygün
Topological analysis based on DFT calculations regarding proton transfer reaction in salicylideneaniline (SA) was performed to scrutinize possible changes in the intramolecular H-bond, π-electron delocalization and aromaticity levels of certain fragments. Quantum chemical calculations and natural bond orbital (NBO) analyses were carried out over a tautomeric ensemble whose members correspond to the molecules at different stages in tautomeric interconversion of SA. The elaboration of intramolecular hydrogen bonding in terms of the relevant topological parameters and the interpretation of certain dependencies regarding its strength were examined. The results show that delocalization index (DI) between donor and acceptor atom δ(O,N) is a useful topological parameter for describing H-bond strength, which is influenced by π-delocalization level within quasiaromatic chelate ring, indicating its resonance-assisted character. NBO analyses reveal that lone-pair (LP) population on N center also affects the strength of intramolecular H-bond in SA. Furthermore, π-electron transfer accompanying intramolecular proton migration in SA is brought into being through formally vacant non-Lewis type LP* orbital on the tautomeric proton. As a result of this, tautomeric protons in molecular entities near TS have hypovalent character due to the lack of electron population in the bonding orbital relative to that in LP* orbital. While H-bonds in the tautomeric ensemble of SA are predominantly partial covalent, molecular entities close to transition state have the strongest covalent H-bonds. The most important result is also that there are linear correlations between the orders of bonds (hydroxyl and amine) involving intramolecular H-bond and electron density values at the relevant BCPs due to partially covalent character of these bonds, contrary to exponential behavior as for purely covalent bonds. Quasiaromatic chelate ring formation is established not only to compel a reduced aromaticity of salicylidene ring but also to decrease in LP-population on N.
Acta Crystallographica Section E: Crystallographic Communications | 2006
Hande Petek; Çiğdem Albayrak; Erbil Ağar; Hüseyin Kalkan
The title compound, C13H10FNO3, crystallizes in a zwitterionic form. The dihedral angle between the aromatic rings is 21.69 (9)°. O—H⋯O hydrogen bonds generate a centrosymmetric R22(10) dimer and the dimers are linked by O—H⋯O hydrogen bonds into sheets parallel to (10\overline{1}).
Acta Crystallographica Section E: Crystallographic Communications | 2004
Hande Petek; Nesuhi Akdemir; Musa Özil; Erbil Agˇar; İsmet Şenel
The title compound, C28H14N4O2S, contains four aromatic rings, and the crystal structure is stabilized by π–π stacking.
Acta Crystallographica Section E: Crystallographic Communications | 2004
Hande Petek; Nesuhi Akdemir; Erbil Agˇar; Musa Özil; İsmet Şenel
The title compound, C21H14N2O, contains three aromatic rings. The structure is stabilized by π–π stacking interactions.
Journal of Molecular Structure | 2008
Hasan Karabıyık; Nazan Ocak-İskeleli; Hande Petek; Çiğdem Albayrak; Erbil Ağar
Journal of Chemical Crystallography | 2008
Hande Petek; Çiğdem Albayrak; Mustafa Odabaşoğlu; İsmet Şenel; Orhan Büyükgüngör
Journal of Chemical Crystallography | 2007
Hande Petek; Çiğdem Albayrak; Nazan Ocak Ískeleli; Erbil Ağar; İsmet Şenel
Structural Chemistry | 2010
Hande Petek; Çiğdem Albayrak; Mustafa Odabaşoğlu; İsmet Şenel; Orhan Büyükgüngör
Structural Chemistry | 2009
Hasan Karabıyık; Hande Petek; Nazan Ocak Ískeleli; Çiğdem Albayrak
Structural Chemistry | 2006
Nazan Ocak Ískeleli; Hasan Karabıyık; Çiğdem Albayrak; Hande Petek; Erbil Ağar