Nanoparticulate zero-valent iron (nZVI) rapidly reacts with oxygen to produce strong oxidants capable of transforming organic contaminants in water. However, the low yield of oxidants with respect to the iron added normally limits the application of this system. Bimetallic nickel-iron nanoparticles (nNi-Fe; i.e., Ni-Fe alloy and Ni-coated Fe nanoparticles) exhibited enhanced yields of oxidants compared to nZVI. nNi-Fe (Ni-Fe alloy nanoparticles with [Ni]/[Fe] = 0.28 and Ni-coated Fe nanoparticles with [Ni]/[Fe] = 0.035) produced approximately 40% and 85% higher yields of formaldehyde from the oxidation of methanol relative to nZVI at pH 4 and 7, respectively. Ni-coated Fe nanoparticles showed a higher efficiency for oxidant production relat...
MSc (Chemistry), North-West University, Potchefstroom CampusAn efficient means to store renewable en...
International audienceThe introduction of iron in bimetallic Ni-Fe nanoparticles allows an efficient...
Zero-valent metals such as bulk iron and zinc are known to dechlorinate toxic organic compounds. Enh...
In aqueous solution, zero-valent iron (ZVI, Fe0) is known to activate oxygen (O2) into reactive oxid...
Iron-incorporated nickel-based materials show promise as catalysts for the oxygen evolution reaction...
Addition of nanoparticulate zero-valent iron (nZVI) to oxygen-containing water results in oxidation ...
Zero valent iron (ZVI) nanoparticles are versatile in their ability to remove a wide variety of wate...
International audienceThe conversion of biomass as a sustainable path to access valuable chemicals a...
The porous-material loading and noble-metal doping of nanoscale zero-valent iron (nFe) have been wid...
Mixed nickel-iron oxides are of great interest as electrocatalysts for the oxygen evolution reaction...
Hydrogen fuel is increasingly seen as an appealing alternative by both the scientific and the indust...
Disposal of operationally exhausted metal working fluids (MWF) through a biological route is an attr...
International audienceProduction of hydrogen from a renewable source that is water requires the deve...
While it has been recognized for some time that addition of nanoparticlate zerovalent iron (nZVI) to...
The production of reactive oxidants from nanoparticulate zero-valent iron (nZVI) and ferrous ion (Fe...
MSc (Chemistry), North-West University, Potchefstroom CampusAn efficient means to store renewable en...
International audienceThe introduction of iron in bimetallic Ni-Fe nanoparticles allows an efficient...
Zero-valent metals such as bulk iron and zinc are known to dechlorinate toxic organic compounds. Enh...
In aqueous solution, zero-valent iron (ZVI, Fe0) is known to activate oxygen (O2) into reactive oxid...
Iron-incorporated nickel-based materials show promise as catalysts for the oxygen evolution reaction...
Addition of nanoparticulate zero-valent iron (nZVI) to oxygen-containing water results in oxidation ...
Zero valent iron (ZVI) nanoparticles are versatile in their ability to remove a wide variety of wate...
International audienceThe conversion of biomass as a sustainable path to access valuable chemicals a...
The porous-material loading and noble-metal doping of nanoscale zero-valent iron (nFe) have been wid...
Mixed nickel-iron oxides are of great interest as electrocatalysts for the oxygen evolution reaction...
Hydrogen fuel is increasingly seen as an appealing alternative by both the scientific and the indust...
Disposal of operationally exhausted metal working fluids (MWF) through a biological route is an attr...
International audienceProduction of hydrogen from a renewable source that is water requires the deve...
While it has been recognized for some time that addition of nanoparticlate zerovalent iron (nZVI) to...
The production of reactive oxidants from nanoparticulate zero-valent iron (nZVI) and ferrous ion (Fe...
MSc (Chemistry), North-West University, Potchefstroom CampusAn efficient means to store renewable en...
International audienceThe introduction of iron in bimetallic Ni-Fe nanoparticles allows an efficient...
Zero-valent metals such as bulk iron and zinc are known to dechlorinate toxic organic compounds. Enh...