» Articles » PMID: 24647521

Water Oxidation by Manganese Oxides Formed from Tetranuclear Precursor Complexes: the Influence of Phosphate on Structure and Activity

Overview
Specialties Biophysics
Chemistry
Date 2014 Mar 21
PMID 24647521
Citations 3
Authors
Affiliations
Soon will be listed here.
Abstract

Two types of manganese oxides have been prepared by hydrolysis of tetranuclear Mn(iii) complexes in the presence or absence of phosphate ions. The oxides have been characterized structurally using X-ray absorption spectroscopy and functionally by O2 evolution measurements. The structures of the oxides prepared in the absence of phosphate are dominated by di-μ-oxo bridged manganese ions that form layers with limited long-range order, consisting of edge-sharing MnO6 octahedra. The average manganese oxidation state is +3.5. The structure of these oxides is closely related to other manganese oxides reported as water oxidation catalysts. They show high oxygen evolution activity in a light-driven system containing [Ru(bpy)3](2+) and S2O8(2-) at pH 7. In contrast, the oxides formed by hydrolysis in the presence of phosphate ions contain almost no di-μ-oxo bridged manganese ions. Instead the phosphate groups are acting as bridges between the manganese ions. The average oxidation state of manganese ions is +3. This type of oxide has much lower water oxidation activity in the light-driven system. Correlations between different structural motifs and the function as a water oxidation catalyst are discussed and the lower activity in the phosphate containing oxide is linked to the absence of protonable di-μ-oxo bridges.

Citing Articles

Electrochemical Water Oxidation and CO Reduction with a Nickel Molecular Catalyst.

Jian H, Lu M, Zheng H, Yan S, Wang M Molecules. 2024; 29(3).

PMID: 38338323 PMC: 10856054. DOI: 10.3390/molecules29030578.


Light-driven formation of manganese oxide by today's photosystem II supports evolutionarily ancient manganese-oxidizing photosynthesis.

Chernev P, Fischer S, Hoffmann J, Oliver N, Assuncao R, Yu B Nat Commun. 2020; 11(1):6110.

PMID: 33257675 PMC: 7705724. DOI: 10.1038/s41467-020-19852-0.


Oxidative Deposition of Manganese Oxide Nanosheets on Nitrogen-Functionalized Carbon Nanotubes Applied in the Alkaline Oxygen Evolution Reaction.

Antoni H, Morales D, Fu Q, Chen Y, Masa J, Schuhmann W ACS Omega. 2019; 3(9):11216-11226.

PMID: 31459231 PMC: 6645440. DOI: 10.1021/acsomega.8b01433.