To meet the current challenges of removing refractory drugs from wastewater and groundwater, an efficient and environmentally friendly treatment process is desired. Herein, a novel magnetic composite of carbon-based Fe-Co oxide (MCFC) was fabricated from a Prussian blue analogue and graphene oxide by pyrolysis in nitrogen and then re-sintering in air. MCFC showed good performance for several kinds of refractory drugs (including 4-aminobenzoic acid ethyl ester (ABEE), sulfamethoxazole and acyclovir) degradation by activation peroxymonosulfate (PMS), without any detectable metal leaching, as an important green environmental remediation technology. A slight performance decrease of MCFC observed during the reuse, was able to be recovered by a s...
Herein, mixed–metal nanocomposite catalysts with various compositions (CoFe2O4/xFe2O3; x = 0, 0.25, ...
The synthesis of carbonaceous materials from a metal organic framework (MIL-100), organic linker and...
Magnetic iron based materials are generally effective for many catalytic reactions and can be magnet...
Magnetic Co-doped Fe3O4@FeOOH nanocomposites were prepared in one step using the hydrothermal synthe...
The study focused on the catalytic activation of peroxymonosulfate (PMS) using cobalt ferrite nanopa...
International audienceIn this study, we employed nano zero-valent iron catalysts supported on graphi...
Nano-Fe⁰ embedded in N-doped carbon architectures (Fe⁰@N-C) were used as a peroxymonosulfate (PMS) a...
Here we report a facile strategy to synthesize porous FexCo3−xO4 nanocages by heating Prussian blue ...
Emerging pharmaceutical contaminants, for example antibiotics, have raised severe challenges to reme...
Resolving three environmental challenges simultaneously—recycling bone waste, aggregation, oxidation...
A series of nitrogen-doped graphene encapsulated FexCoy bimetallic (FexCoy@C) nanocages were newly f...
Persulfate (PS)-activated, iron-based heterogeneous catalysts have attracted significant attention a...
Persulfate (PS)-activated, iron-based heterogeneous catalysts have attracted significant attention a...
Persulfate (PS)-activated, iron-based heterogeneous catalysts have attracted significant attention a...
Emerging pharmaceutical contaminants, for example antibiotics, have raised severe challenges to reme...
Herein, mixed–metal nanocomposite catalysts with various compositions (CoFe2O4/xFe2O3; x = 0, 0.25, ...
The synthesis of carbonaceous materials from a metal organic framework (MIL-100), organic linker and...
Magnetic iron based materials are generally effective for many catalytic reactions and can be magnet...
Magnetic Co-doped Fe3O4@FeOOH nanocomposites were prepared in one step using the hydrothermal synthe...
The study focused on the catalytic activation of peroxymonosulfate (PMS) using cobalt ferrite nanopa...
International audienceIn this study, we employed nano zero-valent iron catalysts supported on graphi...
Nano-Fe⁰ embedded in N-doped carbon architectures (Fe⁰@N-C) were used as a peroxymonosulfate (PMS) a...
Here we report a facile strategy to synthesize porous FexCo3−xO4 nanocages by heating Prussian blue ...
Emerging pharmaceutical contaminants, for example antibiotics, have raised severe challenges to reme...
Resolving three environmental challenges simultaneously—recycling bone waste, aggregation, oxidation...
A series of nitrogen-doped graphene encapsulated FexCoy bimetallic (FexCoy@C) nanocages were newly f...
Persulfate (PS)-activated, iron-based heterogeneous catalysts have attracted significant attention a...
Persulfate (PS)-activated, iron-based heterogeneous catalysts have attracted significant attention a...
Persulfate (PS)-activated, iron-based heterogeneous catalysts have attracted significant attention a...
Emerging pharmaceutical contaminants, for example antibiotics, have raised severe challenges to reme...
Herein, mixed–metal nanocomposite catalysts with various compositions (CoFe2O4/xFe2O3; x = 0, 0.25, ...
The synthesis of carbonaceous materials from a metal organic framework (MIL-100), organic linker and...
Magnetic iron based materials are generally effective for many catalytic reactions and can be magnet...