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dc.contributor.author |
Boualia, Imen |
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dc.contributor.author |
Boulcina, Raouf |
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dc.date.accessioned |
2022-05-25T08:26:31Z |
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dc.date.available |
2022-05-25T08:26:31Z |
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dc.date.issued |
2019-11-18 |
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dc.identifier.uri |
http://depot.umc.edu.dz/handle/123456789/8214 |
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dc.description.abstract |
In this manuscript, we are interested in research focused on the synthesis of new biologically active heterocyclic compounds. This thesis consists of two main parts: The first part was dedicated to the preparation of the new original quinazoline-quinoléine hybrid heterocyclic derivatives and the functionalization of the 4 and 2' positions of 4-chloroquinazoline-2'-chloroquinoléine derivatives, which have interesting biological properties. The present method doesn’t require the use of expensive catalysts or complex ligands and can be considered a useful alternative to Suzuki reaction, even if it was limited to electron-rich partners. In the second part of this work, we report the development of a new synthetic pathway for the preparation of a rich and wide library of substituted 4-amino-5-cyano-pyrimidines and bis(4- amino-5-cyano-pyrimidines), using the K2CO3 as catalysts. The obtained molecules possess a good biological interest (anti-cholinesterase, antioxidant and antimicrobials). |
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dc.language.iso |
fr |
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dc.publisher |
Université Frères Mentouri - Constantine 1 |
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dc.subject |
Chimie: chimie organique |
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dc.subject |
Dihydroquinazolinones |
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dc.subject |
quinazolinones |
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dc.subject |
poly-hétérocycles |
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dc.subject |
condensation de Knoevenagel |
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dc.subject |
quinazolino-quinoléines |
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dc.subject |
pyrimidines |
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dc.subject |
Maladie d’Alzheimer |
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dc.subject |
activité biologique |
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dc.subject |
Knoevenagel condensation |
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dc.subject |
Alzheimer's disease |
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dc.subject |
biological activity |
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dc.subject |
ديهيدروكوينازولينون |
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dc.subject |
كينازولينون |
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dc.subject |
متعدد الحلقات |
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dc.subject |
تكاثف |
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dc.subject |
كينوزولينو كينولين |
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dc.subject |
بيريميدين |
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dc.subject |
مرض الزهايمر |
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dc.subject |
فعالية بيولوجية |
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dc.title |
Conception et synthèse en série hétérocyclique de nouveaux dérivés quinazolinoquinoléines et pyrimidines polyfonctionalisés à intérêt biologique potentiel. |
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dc.type |
Thesis |
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