Artículo
Computational study of basis set and electron correlation effects on anapole magnetizabilities of chiral molecules
Zarycz, Maria Natalia Cristina
; Provasi, Patricio Federico
; Pagola, Gabriel Ignacio
; Ferraro, Marta Beatriz
; Pelloni, Stefano; Lazzeretti, Paolo
Fecha de publicación:
06/2016
Editorial:
John Wiley & Sons Inc
Revista:
Journal Of Computational Chemistry
ISSN:
0192-8651
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
In the presence of a static, nonhomogeneous magnetic field, represented by the axial vector B at the origin of the coordinate system and by the polar vector C=∇×B, assumed to be spatially uniform, the chiral molecules investigated in this paper carry an orbital electronic anapole, described by the polar vector A. The electronic interaction energy of these molecules in nonordered media is a cross term, coupling B and C via ā, one third of the trace of the anapole magnetizability aαβ tensor, that is, WBC=-āB·C. Both A and WBC have opposite sign in the two enantiomeric forms, a fact quite remarkable from the conceptual point of view. The magnitude of ā predicted in the present computational investigation for five chiral molecules is very small and significantly biased by electron correlation contributions, estimated at the density functional level via three different functionals.
Palabras clave:
Anapolos
,
Gradiente de Campo Magnetico
,
Correlacion
,
Quiralidad
Archivos asociados
Licencia
Identificadores
Colecciones
Articulos(CCT - NORDESTE)
Articulos de CTRO.CIENTIFICO TECNOL.CONICET - NORDESTE
Articulos de CTRO.CIENTIFICO TECNOL.CONICET - NORDESTE
Articulos(IFIBA)
Articulos de INST.DE FISICA DE BUENOS AIRES
Articulos de INST.DE FISICA DE BUENOS AIRES
Articulos(IMIT)
Articulos de INST.DE MODELADO E INNOVACION TECNOLOGICA
Articulos de INST.DE MODELADO E INNOVACION TECNOLOGICA
Citación
Zarycz, Maria Natalia Cristina; Provasi, Patricio Federico; Pagola, Gabriel Ignacio; Ferraro, Marta Beatriz; Pelloni, Stefano; et al.; Computational study of basis set and electron correlation effects on anapole magnetizabilities of chiral molecules; John Wiley & Sons Inc; Journal Of Computational Chemistry; 37; 17; 6-2016; 1552-1558
Compartir
Altmétricas