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dc.contributor.author
Luengo, Carina Vanesa  
dc.contributor.author
Castellani, Norberto Jorge  
dc.contributor.author
Ferullo, Ricardo  
dc.date.available
2016-03-07T17:38:44Z  
dc.date.issued
2015-03  
dc.identifier.citation
Luengo, Carina Vanesa; Castellani, Norberto Jorge; Ferullo, Ricardo; Quantum chemical study on surface complex structures of phosphate on gibbsite; Elsevier; Spectrochimica Acta Part A: Molecular And Biomolecular Spectroscopy; 147; 3-2015; 193-199  
dc.identifier.issn
1386-1425  
dc.identifier.uri
http://hdl.handle.net/11336/4658  
dc.description.abstract
Quantum mechanics calculations based on the density functional theory (DFT) were used to identify phosphate surface complexes on gibbsite at low and high pH. The different phosphate species were represented using the Al6(OH)18(H2O)6 cluster model considering four different geometries: monodentate mononuclear (Pmm), monodentate binuclear (Pmb), bidentate mononuclear (Pbm) and bidentate binuclear (Pbb). The corresponding adsorption reactions were modelled via ligand exchange between phosphate species and surface functional groups (hydroxyls and protonated hydroxyls at high and low pH, respectively). The theoretical results indicate that phosphate surface complexes are thermodynamically more favored at acid pH, in agreement with experimental evidences. The first step in these reactions, i.e., the generation of required aluminum vacant sites, was predicted to be particularly favorable when singly coordinated aquo groups are released. Stretching and bending vibrational frequencies associated with the different surface structures were calculated at both pH conditions. The corresponding values at low pH were found to be shifted to higher frequencies with respect to those ones at high pH. ATR-FTIR studies were also carried out. The resulting spectra are dominated by a strong band within the 800?840 cm-1 interval due to P?OH stretching modes. The corresponding peak appearing around 820 cm_1 at high pH is shifted to lower frequencies with respect to the position at low pH, a tendency well predicted by DFT calculations.  
dc.format
application/pdf  
dc.language.iso
eng  
dc.publisher
Elsevier  
dc.rights
info:eu-repo/semantics/openAccess  
dc.rights.uri
https://creativecommons.org/licenses/by-nc-nd/2.5/ar/  
dc.subject
Gibbsite  
dc.subject
Phosphate  
dc.subject
Dft  
dc.subject
Adsorption  
dc.subject
Atr-Ftir  
dc.subject.classification
Física Atómica, Molecular y Química  
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Ciencias Físicas  
dc.subject.classification
CIENCIAS NATURALES Y EXACTAS  
dc.title
Quantum chemical study on surface complex structures of phosphate on gibbsite  
dc.type
info:eu-repo/semantics/article  
dc.type
info:ar-repo/semantics/artículo  
dc.type
info:eu-repo/semantics/publishedVersion  
dc.date.updated
2016-03-30 10:35:44.97925-03  
dc.journal.volume
147  
dc.journal.pagination
193-199  
dc.journal.pais
Países Bajos  
dc.journal.ciudad
Amsterdam  
dc.description.fil
Fil: Luengo, Carina Vanesa. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Bahía Blanca. Instituto de Química del Sur; Argentina. Universidad Nacional del Sur; Argentina  
dc.description.fil
Fil: Castellani, Norberto Jorge. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Bahía Blanca. Instituto de Química del Sur; Argentina. Universidad Nacional del Sur; Argentina  
dc.description.fil
Fil: Ferullo, Ricardo. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Bahía Blanca. Instituto de Física del Sur; Argentina. Universidad Nacional del Sur; Argentina  
dc.journal.title
Spectrochimica Acta Part A: Molecular And Biomolecular Spectroscopy  
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/url/http://www.sciencedirect.com/science/article/pii/S1386142515003091  
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/url/http://dx.doi.org/10.1016/j.saa.2015.03.013  
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/issn/1386-1425