ONO Tip Schiff Baz Komplekslerinin Sentezi, Karakterizasyonu, Katalitik Özellikleri ve Termal Çalışmaları

5-kloro-2-hidroksiasetofenon ve 1-Amino-5-Benzoil-4-fenil-1H-pirimidin-2-on’dan (N-aminopirimidin-2-on) türeyen Schiff bazının bazı metal kompleksleri sentezlenmiştir. Bütün bileşikler elementel analiz, molar iletkenlik, manyetik moment ölçümü, IR, UV-Vis, kütle ve NMR (sadece Pd(II)) gibi spektral ve analitik tekniklerle karakterize edilmiştir. Pd(II) kompleksi kare düzlem geometriye sahipken, diğer kompleksler oktahedral yapıya sahiptir. Kompleksler iletkenlik özelliğine sahip değildir. Cu(II) ve Co(II) kompleksleri kısmi antiferromanyetik özellik gösterirken, Pd(II) kompleksi diyamanyetik özelliktedir. Schiff baz bileşiği ve yeni sentezlenen kompleksleri mikrodalga ışını altında siklohekzan oksidasyonu için incelenmiştir. Hem mikrodalga gücü hem de yeni katalizörlerin siklohekzanın (CyH) siklohekzanon (Cy=O) ve siklohekzanole (Cy–OH) seçici yükseltgenmesini etkilediği görülmüştür. Cu(II) ve Co(II) komplekslerinin liganda ve diğer komplekslere oranla siklohekzanın oksidasyonu reaksiyonunda daha aktif oldukları bulunmuştur.

Synthesis, Characterization, Catalytic Properties and Thermal Studies of ONO Type Schiff Base Complexes

Some metal complexes were synthesized from Schiff base derived from 5-chloro-2-hydroxyacethophenone and N-aminopyrimidine-2-one. All compounds were characterized by elemental analyses, molar conductivity and magnetic measurements, IR, UV-Vis, Mass and NMR (for Pd (II)) spectral and analytic techniques. While Pd(II) complex displayed square planar geometry, the others exhibited octahedral geometry. The whole complexes showed non-electrolytic behavior. While Cu(II) and Co(II) complexes exhibited partial antiferromagnetic properties, Pd(II) complex showed diamagnetic property. Schiff base compound and new synthesized its some complexes were evaluated for cyclohexane oxidation under microwave irradiation. Both the microwave power and the novel catalysts were found to affect the selective oxidation of cyclohexane (CyH) to cyclohexanone (Cy = O) and cyclohexanol (Cy-OH). Cu(II) and Co(II) complexes were found to be more active in the reaction of the oxidation of cyclohexane than in the ligand and other complexes.

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