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UNTERSUCHUNG DER MOLEKULARSTRUKTUR VON LOPINAVIR MITTELS DFT

UNTERSUCHUNG DER MOLEKULARSTRUKTUR VON LOPINAVIR MITTELS DFT

ALI JAWAD KADHIM AL-JANABI / Çiğdem YÜKSEKTEPE ATAOL

65,74 €
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Editorial:
KS OmniScriptum Publishing
Año de edición:
2025
Materia
Física
ISBN:
9786208479442
65,74 €
IVA incluido
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Die Verbindung Lopinavir, die als antivirales Mittel bei COVID-19- und AIDS-Erkrankungen eingesetzt wird, die durch das Coronavirus und das HIV-1-Virus verursacht werden, gehört zu den wichtigsten Medikamenten zur Behandlung von Patienten mit solchen Erkrankungen. Die Molekülstruktur der Verbindung Lopinavir mit der chemischen Formel C37H48N4O5 wurde mit Hilfe von Methoden der computergestützten Chemie untersucht. Bei den Berechnungen kam die Dichtefunktionaltheorie zum Einsatz, die bei organischen Verbindungen sehr gute Ergebnisse liefert. Die Molekülstruktur der Lopinavir-Verbindung wurde im Grundzustand sowohl aus Gas als auch aus Lösungsmitteln mit unterschiedlichen Dielektrizitätskonstanten und Dipolmomenten, wie Ethanol, Aceton, Chloroform und Wasser, ermittelt. Die Molekülstruktur der Lopinavir-Verbindung wurde zunächst in Gas- und verschiedenen Lösungsmittelumgebungen unter Verwendung der Methoden B3LYP/6-311G(d, p) und B3LYP/6-311+G(d, p) optimiert. Anhand der optimierten Molekülstrukturen der Lopinavir-Verbindung wurde eine Karte des elektrostatischen Potenzials erstellt. Es wurden die Molekülorbitalenergiewerte der Molekülstruktur der Lopinavir-Verbindung ermittelt und die prozentualen Beiträge der funktionellen Gruppen zu den Molekülorbitalenergieniveaus berechnet.

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