Advanced search
Start date
Betweenand


Reactivity of trinuclear ruthenium acetates with nitrite and nitric oxide ligands in aqueous media

Full text
Author(s):
Barbosa, Hugo E. ; da Silva, Amanda B. ; Nazar, Pedro H. O. ; Bertoloni, Renan R. ; de Oliveira-Filho, Antonio G. S. ; Nikolaou, Sofia
Total Authors: 6
Document type: Journal article
Source: DALTON TRANSACTIONS; v. 54, n. 23, p. 11-pg., 2025-05-20.
Abstract

The chemical reactivity of nitrosyl- and nitrite-coordinated compounds in an aqueous environment is a vital part of understanding the action of these compounds as potential nitric oxide-releasing molecules (NORMs). This work reports the behaviour of the [Ru3O(CH3COO)6(py)2NO2] (1) complex, which is an isomeric mixture of nitrite-N and nitrite-O, and the nitrosyl complex [Ru3O(CH3COO)6(py)2NO]PF6 (2) in aqueous medium with and without light irradiation. NO release under light irradiation was detected through chronoamperometry, which showed that nitrite complex 1 produces NO but is less effective than nitrosyl complex 2. This difference is due to the mechanism of NO production by complex 1, which depends on the nitrite-O isomer, present in minor proportion in the synthetic sample, as shown by computational and NMR data. The reactivity of these compounds in the dark was investigated under various pH values. The nitrite complex 1 had the coordinated nitrite converted to NO+, with a pK = 4.2. NO+ was readily released, yielding the solvate species [Ru3O(CH3COO)6(py)2S]+. For the nitrosyl complex 2, two successive nucleophilic attacks by hydroxide ions were observed producing the [Ru3O(CH3COO)6(py)2HNO2] (3) and [Ru3O(CH3COO)6(py)2NO2]- (4) compounds, with pK values of 9.8 and 12.3, respectively. In buffered solutions (TRIS.HCl and PBS), the kinetic trace for the conversion of 2 to 3 suggested an induction period followed by the complete conversion to [Ru3O(CH3COO)6(py)2HNO2] at pH values where the nitrosyl [Ru3O(CH3COO)6(py)2NO]+ should be the major species. Based on these observations, our data suggest a sequence of steps in which compound 3 accumulates and then, with the aid of the buffer components, increases the rate of its own formation. (AU)

FAPESP's process: 20/15607-1 - Synthesis, characterization and biological properties of a photosensitizing ruthenium mononuclear complex with a bulky ligand and a DNA intercalator with photoinduced release of NO
Grantee:Renan Ribeiro Bertoloni
Support Opportunities: Scholarships in Brazil - Master
FAPESP's process: 24/04574-6 - Synthesis, characterization and biological study of mononuclear cyclometallated ruthenium compounds: release of target molecules
Grantee:Pedro Henrique Oliveira Nazar
Support Opportunities: Scholarships in Brazil - Master
FAPESP's process: 21/00675-4 - Tying up materials for electrochemical energy storage and catalysis
Grantee:Roberto Manuel Torresi
Support Opportunities: Research Projects - Thematic Grants
FAPESP's process: 23/10722-5 - Computational design of bioinspired transition metal-based catalysts for H2 generation
Grantee:Renan Ribeiro Bertoloni
Support Opportunities: Scholarships in Brazil - Doctorate
FAPESP's process: 22/03478-8 - Reactivity of polynuclear ruthenium compounds with potential biological application
Grantee:Sofia Nikolaou
Support Opportunities: Regular Research Grants