Photochemical redox cycling of iron coupled with oxidation of malonate (Mal) ligand has been investigated under conditions that are representative of atmospheric waters. Malonate exhibited significantly different characteristics from oxalate and other dicarboxylates (or monocarboxylates). Both strong chelating ability with Fe(III) and strong molar absorptivities, but much low efficiency of Fe(II) formation (ΦFe(II) = 0.0022 ± 0.0009, 300−366 nm) were observed for Fe(III)−Mal complexes (FMCs). Fe(III) speciation calculation indicated that Mal is capable of mediating the proportion between two photoactive species of Fe(III)−OH complexes and FMCs by changing the Mal concentration. Spin-trapping electron spin resonance (ESR) experiments proved ...
International audienceIn the present work, the photoreactivity of a mixture of iron(III)–pyoverdin (...
International audienceIn this work, the photo reactivity of ferric oxalate (Fe(III)-Ox) complex in a...
Fe(III)–oxalate complexes are likely abundant in clouds, fogs and aerosol water. They are photoreac...
The photoreactions between Fe(III)/Fe(II) and low-molecular-weight organic matter (LMWOM) under sola...
Recent evidence suggested that organic ligands in atmosphere water play an important role in the mob...
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...
To quantify the effects of an advanced iron photochemistry scheme, the chemical aqueous-phase radica...
Iron play a significant role in atmosphere. Its reactivity depends on oxidation state and speciation...
The roles of chromium species on photochemical cycling of iron and mineralization of polycarboxylate...
Stable organic species produced on irradiation of Suwannee River Fulvic Acid (SRFA) are shown to be ...
International audienceIn the present work, the photoreactivity of a mixture of iron(III)–pyoverdin (...
The trimeric clusters [Fe(III)<sub>3</sub>(X-Sal-AHA)<sub>3</sub>(μ<sub>3</sub>-OCH<sub>3</sub>)]<s...
Iron-organic interactions are involved in a variety of environmental phenomena, including photo-redo...
International audienceIn the present work, the photoreactivity of a mixture of iron(III)–pyoverdin (...
International audienceIn this work, the photo reactivity of ferric oxalate (Fe(III)-Ox) complex in a...
Fe(III)–oxalate complexes are likely abundant in clouds, fogs and aerosol water. They are photoreac...
The photoreactions between Fe(III)/Fe(II) and low-molecular-weight organic matter (LMWOM) under sola...
Recent evidence suggested that organic ligands in atmosphere water play an important role in the mob...
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...
To quantify the effects of an advanced iron photochemistry scheme, the chemical aqueous-phase radica...
Iron play a significant role in atmosphere. Its reactivity depends on oxidation state and speciation...
The roles of chromium species on photochemical cycling of iron and mineralization of polycarboxylate...
Stable organic species produced on irradiation of Suwannee River Fulvic Acid (SRFA) are shown to be ...
International audienceIn the present work, the photoreactivity of a mixture of iron(III)–pyoverdin (...
The trimeric clusters [Fe(III)<sub>3</sub>(X-Sal-AHA)<sub>3</sub>(μ<sub>3</sub>-OCH<sub>3</sub>)]<s...
Iron-organic interactions are involved in a variety of environmental phenomena, including photo-redo...
International audienceIn the present work, the photoreactivity of a mixture of iron(III)–pyoverdin (...
International audienceIn this work, the photo reactivity of ferric oxalate (Fe(III)-Ox) complex in a...
Fe(III)–oxalate complexes are likely abundant in clouds, fogs and aerosol water. They are photoreac...