Synthesis of amino carbonil compounds using zinc iodide catalyst by Mannich reaction
2011
0 görüntülenme
0 i̇ndirme
Danışman: Yrd. Doç. Dr. Mehmet Nebioğlu
Özet (EN)
Key Words: Amino Carbonyl Compounds, Zinc Iodide, Lewis Acid, Mannich Base, Three component Mannich Reaction.Amino carbonyl compounds (Mannich base) and derivatives, which are easily formed from Mannich reaction, are very important compounds in medicinal and polimer chemistry. For this reason, the interest in Mannich reaction which can be succeeded both in acidic and basic medium had been constantly increasing.In this study, a new method was improved using three component one-pot Mannich reaction by using zinc iodide catalyst for the synthesis of amino carbonyl compounds. First of all, mol percent of catalyst was changed and the amount of catalyst for the best reaction yield was determined. Also, different solvents were examined for the reaction and the amount of the most appropriate solvent was determined. For the diastereoselectivity in the product, different ketone derivatives were tried. In the synthesis made with 4-tert-butyl cyclohexanone, only syn product was successfully obtained. The final solid products were crystallized in appropriate solvents, and the structures of the products were verified by 1H NMR spectrums.
Yazar
Dr. Emine Öz
Kurum
Bu Yayına Nasıl Atıf Yapılır
Emine Öz (Master Thesis). Synthesis of amino carbonil compounds using zinc iodide catalyst by Mannich reaction, 2011, Sakarya University.
Anahtar Kelimeler
Lisans
Tüm Hakları Saklıdır
Bu eser belirtilen lisans koşulları altında paylaşılmaktadır.
Sakarya University tezlerinden daha fazlası
- Computational investigation of battery materials using density functional theory(2023)
- Haci Ahmed b. Seyyid al-Bigavî and Tarjama al-Awārif al-maārif (sections of 22-43)(2024)
- Synthesis of carbazol substituted 3,4-dihydropyrimidine-2(1h)-thione deri̇vati̇ves(2024)
- Classification of recyclable wastes with deep learning models: A comparison on the effect of dataset size(2024)
- Hermeneutical analysis of sacrifice, sacred violence and scapegoat motifs in Turkish Mythology(2024)
- Novel thio-chalcone substituted metallophthalocyanines: synthesis, characterization and redox behaviour(2018)
