The nature of Ru-NO bonds in ruthenium tetraazamacrocycle nitrosyl complexes-a computational study


Autoria(s): Caramori, Giovanni Finoto; Kunitz, Andre Guilherme; Andriani, Karla Furtado; Doro, Fabio Gorzoni; Frenking, Gernot; Tfouni, Elia
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

07/11/2013

07/11/2013

2012

Resumo

Ruthenium complexes including nitrosyl or nitrite complexes are particularly interesting because they can not only scavenge but also release nitric oxide in a controlled manner, regulating the NO-level in vivo. The judicious choice of ligands attached to the [RuNO] core has been shown to be a suitable strategy to modulate NO reactivity in these complexes. In order to understand the influence of different equatorial ligands on the electronic structure of the Ru-NO chemical bonding, and thus on the reactivity of the coordinated NO, we propose an investigation of the nature of the Ru-NO chemical bond by means of energy decomposition analysis (EDA), considering tetraamine and tetraazamacrocycles as equatorial ligands, prior to and after the reduction of the {RuNO}(6) moiety by one electron. This investigation provides a deep insight into the Ru-NO bonding situation, which is fundamental in designing new ruthenium nitrosyl complexes with potential biological applications.

FAPESC

CNPq [17.413/2009-0]

CAPES

FAPESB (Processo PPP039/2010)

FAPESP (Processo 2006/53266-4)

Identificador

DALTON TRANSACTIONS, CAMBRIDGE, v. 41, n. 24, pp. 7327-7339, MAY, 2012

1477-9226

http://www.producao.usp.br/handle/BDPI/42727

10.1039/c2dt12094a

http://dx.doi.org/10.1039/c2dt12094a

Idioma(s)

eng

Publicador

ROYAL SOC CHEMISTRY

CAMBRIDGE

Relação

DALTON TRANSACTIONS

Direitos

openAccess

Copyright ROYAL SOC CHEMISTRY

Palavras-Chave #NITRIC-OXIDE DONORS #REGULAR 2-COMPONENT HAMILTONIANS #TRANSPARENT MOLECULAR SYSTEMS #DEGENERATE ELECTRONIC STATES #ENERGY-PARTITIONING ANALYSIS #TRANSITION-METAL NITROSYL #INDUCED METASTABLE STATES #RELAXING FACTOR #POLYATOMIC-MOLECULES #THERAPEUTIC APPROACH #CHEMISTRY, INORGANIC & NUCLEAR
Tipo

article

original article

publishedVersion