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Updated: May 13, 2025

Synthesis and Reaction Chemistry of Nanosize Monosodium Titanate
Published on: February 23, 2016
Structural Analysis of Selenium Coordination Compounds and Mesoporous TiO2-Based Photocatalysts for Hydrogen
Rodrigo Cervo1, Cândida Alíssia Brandl1, Tanize Bortolotto1
1Department of Chemistry, Federal University of Santa Maria (UFSM), # Av. Roraima, n.1000, 97105-900 Santa Maria, RS, Brazil.
Abstract:
This study reports the synthesis of ten coordination compounds (1-10) derived from the ligand bis((3-aminopyridin-2-yl)selanyl)methane (L) and different metal centers (CoII, CuI, CuII, ZnII, and AgI). Single crystals of the complexes were obtained via slow diffusion from overlaid solutions of ligand L and the corresponding metal. Their crystalline structures were determined by single-crystal X-ray diffraction (SCXRD) and further characterized using spectroscopic, spectrometric, and voltammetric techniques. Complexes 1-5, 7, and 10 were evaluated as cocatalysts of mesoporous titanium dioxide (m-TiO2) for photocatalytic hydrogen production via water photolysis under solar light simulation, using triethanolamine (TEOA) as the sacrificial agent. The results showed that complexes 4, 5, 7, and 10 enhanced m-TiO2 photocatalytic activity, achieving hydrogen evolution rates at least four times higher than standard m-TiO2 and P25. Among these, the photocatalyst m-TiO2-7 (7 = [Cu2(μ-SO4)2L]) exhibited the highest hydrogen production, reaching approximately 7800 μmol/g over a 6-h experiment-nearly 26 times greater than pure m-TiO2 (300 μmol/g). These findings highlight the potential of organoselenium metal complexes for the development of novel photocatalytic materials based on nonprecious metals.
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