The nanoconfinement effect in Fenton-like reactions shows great potential in environmental remediation, but the construction of confinement structure and the corresponding mechanism are rarely elucidated systematically. Herein, we proposed a novel peroxymonosulfate (PMS) activation system employing the single Fe atom supported on mesoporous N-doped carbon (FeSA-MNC, specific surface area = 1520.9 m2/g), which could accelerate the catalytic oxidation process via the surface-confinement effect. The degradation activity of the confined system was remarkably increased by 34.6 times compared to its analogue unconfined system. The generation of almost 100% high-valent iron-oxo species was identified via 18O isotope-labeled experiments, quenching ...
International audienceIn this study, we employed nano zero-valent iron catalysts supported on graphi...
The Fenton-like process presents one of the most promising strategies to generate reactive oxygen-co...
In this work, a cost-effective and eco-friendly calcium-doped α-Fe2O3 (Ca-Fe2O3) with abundant oxyge...
Abstract Fenton‐like reactions with persulfates as the oxidants have attracted increasing attentions...
Nano-Fe⁰ embedded in N-doped carbon architectures (Fe⁰@N-C) were used as a peroxymonosulfate (PMS) a...
Transition-metal and nitrogen co-doped carbon-based catalysts receive much attention in peroxymonosu...
Transition-metal and nitrogen co-doped carbon-based catalysts receive much attention in peroxymonosu...
Transition-metal and nitrogen co-doped carbon-based catalysts receive much attention in peroxymonosu...
Monometallic single atom catalysts have exhibited excellent catalytic capacity due to their unique s...
The Fenton-like process presents one of the most promising strategies to generate reactive oxygen-co...
Tuning the atomic interface configuration of noble metals (NMs) and transition-metal oxides is an ef...
Peroxymonosulfate (PMS)-based advanced oxidation process (AOP) is one of the promising approaches to...
The Fenton-like process presents one of the most promising strategies to generate reactive oxygen-co...
The Fenton-like process presents one of the most promising strategies to generate reactive oxygen-co...
The Fenton-like process presents one of the most promising strategies to generate reactive oxygen-co...
International audienceIn this study, we employed nano zero-valent iron catalysts supported on graphi...
The Fenton-like process presents one of the most promising strategies to generate reactive oxygen-co...
In this work, a cost-effective and eco-friendly calcium-doped α-Fe2O3 (Ca-Fe2O3) with abundant oxyge...
Abstract Fenton‐like reactions with persulfates as the oxidants have attracted increasing attentions...
Nano-Fe⁰ embedded in N-doped carbon architectures (Fe⁰@N-C) were used as a peroxymonosulfate (PMS) a...
Transition-metal and nitrogen co-doped carbon-based catalysts receive much attention in peroxymonosu...
Transition-metal and nitrogen co-doped carbon-based catalysts receive much attention in peroxymonosu...
Transition-metal and nitrogen co-doped carbon-based catalysts receive much attention in peroxymonosu...
Monometallic single atom catalysts have exhibited excellent catalytic capacity due to their unique s...
The Fenton-like process presents one of the most promising strategies to generate reactive oxygen-co...
Tuning the atomic interface configuration of noble metals (NMs) and transition-metal oxides is an ef...
Peroxymonosulfate (PMS)-based advanced oxidation process (AOP) is one of the promising approaches to...
The Fenton-like process presents one of the most promising strategies to generate reactive oxygen-co...
The Fenton-like process presents one of the most promising strategies to generate reactive oxygen-co...
The Fenton-like process presents one of the most promising strategies to generate reactive oxygen-co...
International audienceIn this study, we employed nano zero-valent iron catalysts supported on graphi...
The Fenton-like process presents one of the most promising strategies to generate reactive oxygen-co...
In this work, a cost-effective and eco-friendly calcium-doped α-Fe2O3 (Ca-Fe2O3) with abundant oxyge...