Density Functional Molecular Study on the Full Conformational Space of the S-4-(2-Hydroxypropoxy)carbazol Fragment of Carvedilol (1-(9H−Carbazol-4-yloxy)-3- [2-(2-methoxyphenoxy)ethylamino]-2-propanol) in Vacuum and in Different Solvent Media

Density functional theory (DFT) conformational analysis was carried out on the potential energy hypersurface (PEHS) of the carbazole-containing molecular fragment, S-4-(2-hydroxypropoxy)-carbazol, of the chiral cardiovascular drug molecule carvedilol, (1-(9H-carbazol-4-yloxy)-3-[2-(2-methoxy-phenoxy...

Teljes leírás

Elmentve itt :
Bibliográfiai részletek
Szerzők: Almeida David R. P.
Pisterzi Luca F.
Chasse Gregory Adam
Torday László
Varró András
Papp Gyula
Csizmadia Imre Gyula
Dokumentumtípus: Cikk
Megjelent: 2002
Sorozat:JOURNAL OF PHYSICAL CHEMISTRY A 106 No. 43
Tárgyszavak:
doi:10.1021/jp021253c

mtmt:1132553
Online Access:http://publicatio.bibl.u-szeged.hu/28635
LEADER 02746nab a2200301 i 4500
001 publ28635
005 20231109083253.0
008 231109s2002 hu o 0|| Angol d
022 |a 1089-5639 
024 7 |a 10.1021/jp021253c  |2 doi 
024 7 |a 1132553  |2 mtmt 
040 |a SZTE Publicatio Repozitórium  |b hun 
041 |a Angol 
100 1 |a Almeida David R. P. 
245 1 0 |a Density Functional Molecular Study on the Full Conformational Space of the S-4-(2-Hydroxypropoxy)carbazol Fragment of Carvedilol (1-(9H−Carbazol-4-yloxy)-3- [2-(2-methoxyphenoxy)ethylamino]-2-propanol) in Vacuum and in Different Solvent Media  |h [elektronikus dokumentum] /  |c  Almeida David R. P. 
260 |c 2002 
300 |a 10423-10436 
490 0 |a JOURNAL OF PHYSICAL CHEMISTRY A  |v 106 No. 43 
520 3 |a Density functional theory (DFT) conformational analysis was carried out on the potential energy hypersurface (PEHS) of the carbazole-containing molecular fragment, S-4-(2-hydroxypropoxy)-carbazol, of the chiral cardiovascular drug molecule carvedilol, (1-(9H-carbazol-4-yloxy)-3-[2-(2-methoxy-phenoxy)ethylamino]-2-propanol) . The PEHS was computed in vacuum, chloroform, ethanol, DMSO, and water at the B3LYP/6-31G(d) level of theory. The carbazole ring system was confirmed to be planar, and the resultant PEHS in vacuum contained 19 converged minima, of which the global minima possessed a conformation with chi(1), chi(2), and chi(3) in the anti position and chi(10) in the g position. Conformer stability for the S-4-(2-hydroxypropoxy)carbazol PEHS was influenced by intramolecular hydrogen bonding. Tomasi PCM reaction-field calculations revealed that the lowest SCF energies, relative conformer energies, and solvation free energies (DeltaG (solvation)) for the S-4-(2-hydroxypropoxy)carbazol PEHS were in protic solvents, ethanol and water, because of the larger hydrogen bond donor values of these solvents, which aid in stabilization of the dipole moment created by the carbazole ring system and the oxygen and nitrogen atoms. However, solvent effects contributed most significantly to the stabilization of S-4-(2-hydroxypropoxy)carbazol conformers that contained no internal hydrogen bonding, whereas solvent effects were not as important for conformers that contained intramolecular hydrogen bonding. 
650 4 |a Kémiai tudományok 
650 4 |a Általános orvostudomány 
700 0 1 |a Pisterzi Luca F.  |e aut 
700 0 1 |a Chasse Gregory Adam  |e aut 
700 0 1 |a Torday László  |e aut 
700 0 1 |a Varró András  |e aut 
700 0 1 |a Papp Gyula  |e aut 
700 0 1 |a Csizmadia Imre Gyula  |e aut 
856 4 0 |u http://publicatio.bibl.u-szeged.hu/28635/1/DensityFunctionalMolecularStudyontheFullConformationalSpace_jp021253c.pdf  |z Dokumentum-elérés