International audienceIn this work, the photo reactivity of ferric oxalate (Fe(III)-Ox) complex in atmospheric particles was investigated. Raman spectroscopy was used to explore the mechanism and kinetics of Fe(III)-Ox photolysis occurring at the aqueous/gas interface, inside the droplet and in bulk solution. Ferrous carbonate (FeCO3) was detected indicating that carbonate ion (CO32−) formed inside the droplets would compete with oxalate ligands for iron complexation. A higher concentration of photoproduct Fe(II)-Ox was observed at the surface and inside of the droplets than in bulk solution. In particular, Fe(III)-Ox on the droplet surface was quickly reduced with light and Fe(II)-Ox concentration gradually decreased with irradiation time....
International audienceIn the present work, the photoreactivity of a mixture of iron(III)–pyoverdin (...
International audienceIn the present work, the photoreactivity of a mixture of iron(III)–pyoverdin (...
The complexation of iron (III) with oxalic acid in aqueous solution yields a strongly absorbing chro...
Fe(III)–oxalate complexes are ubiquitous in atmospheric environments, which can release reactive oxy...
Iron(III) oxalate, Fe3+(C2O4)33-, is a photoactive metal organic complex found in natural systems an...
Fe(III)–oxalate complexes are likely abundant in clouds, fogs and aerosol water. They are photoreac...
In this work, the photolysis of ferrioxalate complexes attended to the photoreduction of hexavalent...
Iron(III) oxalate, Fe<sup>3+</sup>(C<sub>2</sub>O<sub>4</sub>)<sub>3</sub><sup>3–</sup>, is a photo...
To quantify the effects of an advanced iron photochemistry scheme, the chemical aqueous-phase radica...
International audienceIn the present study we investigate the photochemical properties and impact on...
International audienceIn the present study we investigate the photochemical properties and impact on...
International audienceIn the present study we investigate the photochemical properties and impact on...
Recent evidence suggested that organic ligands in atmosphere water play an important role in the mob...
Photochemical redox cycling of iron coupled with oxidation of malonate (Mal) ligand has been investi...
Although there have been a number of studies of the solubility of Fe in marine mineral aerosols, the...
International audienceIn the present work, the photoreactivity of a mixture of iron(III)–pyoverdin (...
International audienceIn the present work, the photoreactivity of a mixture of iron(III)–pyoverdin (...
The complexation of iron (III) with oxalic acid in aqueous solution yields a strongly absorbing chro...
Fe(III)–oxalate complexes are ubiquitous in atmospheric environments, which can release reactive oxy...
Iron(III) oxalate, Fe3+(C2O4)33-, is a photoactive metal organic complex found in natural systems an...
Fe(III)–oxalate complexes are likely abundant in clouds, fogs and aerosol water. They are photoreac...
In this work, the photolysis of ferrioxalate complexes attended to the photoreduction of hexavalent...
Iron(III) oxalate, Fe<sup>3+</sup>(C<sub>2</sub>O<sub>4</sub>)<sub>3</sub><sup>3–</sup>, is a photo...
To quantify the effects of an advanced iron photochemistry scheme, the chemical aqueous-phase radica...
International audienceIn the present study we investigate the photochemical properties and impact on...
International audienceIn the present study we investigate the photochemical properties and impact on...
International audienceIn the present study we investigate the photochemical properties and impact on...
Recent evidence suggested that organic ligands in atmosphere water play an important role in the mob...
Photochemical redox cycling of iron coupled with oxidation of malonate (Mal) ligand has been investi...
Although there have been a number of studies of the solubility of Fe in marine mineral aerosols, the...
International audienceIn the present work, the photoreactivity of a mixture of iron(III)–pyoverdin (...
International audienceIn the present work, the photoreactivity of a mixture of iron(III)–pyoverdin (...
The complexation of iron (III) with oxalic acid in aqueous solution yields a strongly absorbing chro...