Master Degree / Yüksek Lisans Tezleri
Permanent URI for this collectionhttps://hdl.handle.net/11147/3008
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Master Thesis Synthesis of 1,5-Disubstituted 1,2,3-Triazole Modified Azacoumarins(01. Izmir Institute of Technology, 2022) Çağır, Ali; Çağır, Ali; 04.01. Department of Chemistry; 04. Faculty of Science; 01. Izmir Institute of TechnologyCancer is a deadly disease that threatens human health and all life, and it is still a serious problem despite all scientific studies for more than half a century. Pharmacophores are a part of the structure of a drug (or drug candidate) responsible from the biological activity. This thesis is related with the synthesis of novel compounds having two well-known pharmacophore structures, 1,2,3-triazole and 1-azacoumarin. Both structures can be found in the structure of many biologically active molecules. Triazole modified coumarin derivatives are scarce in the literature. In this study, we aimed to improve the synthetic route toward the synthesis of 1- azacoumarin derivative modified by 1,2,3-triazole group at position 4-. Synthesis starts with the conversion of methyl 4-chloroanthranilate to the corresponding 4-OH azacoumarin. Then it is transferred into the 4-OTf group by simply addition of Tf group to OH under basic condition. After Sonogashira reaction and removal of TMS group 4- alkynyl-1-azacoumarin was produced. At this point, conversion of alkyne into 1,5- disubstituted 1,2,3-triazole was examined in the presence of Cp2Ni-Xantphos and RuCl(COD)Cp* catalytic systems but all of trials were failed probably due to the presence of ester group close to the reaction site. In further studies, design of the molecule will be reperformed and ester group will be moved over phenyl rings in order to test its biological activity over cancer cell lines.Master Thesis Synthesis of Needle-Like and Rod-Like Nano Baco3 Particles(Izmir Institute of Technology, 2016) Kahyaoğlu, Tuğçe Nefise; Özdemir, Ekrem; Özdemir, Ekrem; 03.02. Department of Chemical Engineering; 03. Faculty of Engineering; 01. Izmir Institute of TechnologyBarium carbonate (BaCO3) has been widely used in soft and heavy industries such as ferrite magnets, solid oxide fuel cells, optical glass manufacturing, coatings, and polymeric composite materials as well as ceramic and brick industries. Using BaCO3 in nano sizes will improve some of the physical properties of materials such as tensile strength, opacity, and thermal resistance. Production of BaCO3 by chemical method requires extensive crystallization times and higher temperatures. Production of BaCO3 by carbonation method usually yields particles with some agglomeration. In a study, conducted by our group funded by The Scientific and Technological Research Council (TUBITAK), a method was developed to synthesize hollow nano Calcium Carbonate (CaCO3) particles. It was aimed to apply the developed method, which is unique in its kind, to produce nano BaCO3 particles in different morphologies. Parameters such as effect of barium hydroxide (Ba(OH)2) concentration, CO2 flow rate, length in reaction chamber, and stirring rate were studied. Conductivity and pH values of the solution were monitored during crystallization. Surface morphology and crystal structure of the produced BaCO3 particles were characterized by Scanning Electron Microscopy (SEM) and X-Ray Diffraction (XRD), respectively. It was shown that rod-like BaCO3 particles produced in nano sizes with almost homogeneous size distributions. The rod-like BaCO3 particles had a diameter from 100 to 400 nm and an aspect ratio of about from 3 to 10. The produced rod-like nano BaCO3 were all in orthorhombic phase of BaCO3 called as Witherite.
