Theoretical study of the binding nature of glassy carbon with nickel(II) phthalocyanine complexes

Cortez, L; Berríos C.; Yañez M.; Cardenas-Jiron, GI

Abstract

A theoretical study at the semiempirical RHF/PM3(tm) level (tm: transition metal) of the binding nature between a glassy carbon (GC) cluster and a nickel(II) complex (nickel(II) phthalocyanine NiPc, nickel(II) tetrasulphophthalocyanine NiTSPc) was performed. Three types of interactions for GC?NiPc (NiTSPc) were studied: (a) through an oxo (O) bridge, (b) through an hydroxo (OH) bridge, and (c) non-bridge. One layer (NiPc, NiTSPc) and two layers (NiPc?NiPc) of complex were considered. The binding energy calculated showed that in both cases NiPc and NiTSPc, the oxo structures are more stable than the hydroxo ones, and than the non-bridge systems. Charge analysis (NAO) predicted that GC gained more electrons in an oxo structure than in the analogues hydroxo. The theoretical results showed an agreement with the experimental data available, an oxo binding between GC and a nickel complex (NiPc, NiTSPc) in aqueous alkaline solutions is formed. © 2009 Elsevier B.V. All rights reserved.

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Título según WOS: Theoretical study of the binding nature of glassy carbon with nickel(II) phthalocyanine complexes
Título según SCOPUS: Theoretical study of the binding nature of glassy carbon with nickel(II) phthalocyanine complexes
Título de la Revista: CHEMICAL PHYSICS
Volumen: 365
Número: 3
Editorial: Elsevier
Fecha de publicación: 2009
Página de inicio: 164
Página final: 169
Idioma: English
URL: http://linkinghub.elsevier.com/retrieve/pii/S0301010409003188
DOI:

10.1016/j.chemphys.2009.10.016

Notas: ISI, SCOPUS