Les Inscriptions à la Bibliothèque sont ouvertes en
ligne via le site: https://biblio.enp.edu.dz
Les Réinscriptions se font à :
• La Bibliothèque Annexe pour les étudiants en
2ème Année CPST
• La Bibliothèque Centrale pour les étudiants en Spécialités
A partir de cette page vous pouvez :
Retourner au premier écran avec les recherches... |
Détail de l'auteur
Auteur Gilles Marcou
Documents disponibles écrits par cet auteur
Affiner la rechercheComplexation of Mn2+, Fe2+, Y3+, La3+, Pb2+, and UO22+ with organic ligands / Vitaly Solovev in Industrial & engineering chemistry research, Vol. 51 N° 41 (Octobre 2012)
[article]
in Industrial & engineering chemistry research > Vol. 51 N° 41 (Octobre 2012) . - pp. 13482-13489
Titre : Complexation of Mn2+, Fe2+, Y3+, La3+, Pb2+, and UO22+ with organic ligands : QSPR ensemble modeling of stability constants Type de document : texte imprimé Auteurs : Vitaly Solovev, Auteur ; Gilles Marcou, Auteur ; Aslan Tsivadze, Auteur Année de publication : 2012 Article en page(s) : pp. 13482-13489 Note générale : Industrial chemistry Langues : Anglais (eng) Mots-clés : Stability Modeling Organic ligand Complexation Résumé : Quantitative structure―property relationship (QSPR) modeling of the stability constant logK of the 1:1 (M:L) complexes of 6 transition-metal cations (M) with 261 (Mn2+), 87 (Fe2+), 105 (Y3+), 186 (La3+), 226 (Pb2+), and 66 (UO22+) organic ligands (L) in aqueous solutions at 298 K and an ionic strength 0.1 M was performed using ensemble multiple linear regression analysis and substructural molecular fragments as descriptors. The models have been validated in external 5-fold cross-validations procedure and on new ligands recently reported in the literature. Predicted logK values were calculated by consensus models as arithmetic means of 315 (Mn2+), 119 (Fe2+), 260 (Y3+), 290 (La3+), 304 (Pb2+), and 249 (UO22+) individual models. Absolute prediction error of logK is below 1.0 for 75% (UO22+), 70% (Mn2+, Fe2+, La3+), 65% (Pb2+), and 60% (Y3+) of the ligands and comparable with the systematic errors in experimental data. The developed QSPR models were used to screen selective ligands for the studied cations. The obtained models are incorporated in the COMET predictor available at. ISSN : 0888-5885 En ligne : http://cat.inist.fr/?aModele=afficheN&cpsidt=26493642 [article] Complexation of Mn2+, Fe2+, Y3+, La3+, Pb2+, and UO22+ with organic ligands : QSPR ensemble modeling of stability constants [texte imprimé] / Vitaly Solovev, Auteur ; Gilles Marcou, Auteur ; Aslan Tsivadze, Auteur . - 2012 . - pp. 13482-13489.
Industrial chemistry
Langues : Anglais (eng)
in Industrial & engineering chemistry research > Vol. 51 N° 41 (Octobre 2012) . - pp. 13482-13489
Mots-clés : Stability Modeling Organic ligand Complexation Résumé : Quantitative structure―property relationship (QSPR) modeling of the stability constant logK of the 1:1 (M:L) complexes of 6 transition-metal cations (M) with 261 (Mn2+), 87 (Fe2+), 105 (Y3+), 186 (La3+), 226 (Pb2+), and 66 (UO22+) organic ligands (L) in aqueous solutions at 298 K and an ionic strength 0.1 M was performed using ensemble multiple linear regression analysis and substructural molecular fragments as descriptors. The models have been validated in external 5-fold cross-validations procedure and on new ligands recently reported in the literature. Predicted logK values were calculated by consensus models as arithmetic means of 315 (Mn2+), 119 (Fe2+), 260 (Y3+), 290 (La3+), 304 (Pb2+), and 249 (UO22+) individual models. Absolute prediction error of logK is below 1.0 for 75% (UO22+), 70% (Mn2+, Fe2+, La3+), 65% (Pb2+), and 60% (Y3+) of the ligands and comparable with the systematic errors in experimental data. The developed QSPR models were used to screen selective ligands for the studied cations. The obtained models are incorporated in the COMET predictor available at. ISSN : 0888-5885 En ligne : http://cat.inist.fr/?aModele=afficheN&cpsidt=26493642