Zero-valent iron (ZVI) nanoparticles are susceptible to oxidation and are therefore sensitive to postsynthesis processing, including both separation and storage techniques. Two separation methods, centrifugation and magnetic separation, were evaluated in this study. Nanoparticle stability during storage in ethanol-water solutions was also studied, and the influence of both water and aeration on nanoparticle oxidation was determined. Nanoparticle morphology and extent of oxidation were analyzed with electron microscopy, elemental analysis, zeta potential, and X-ray photoelectron spectroscopy. Microscopy results suggest that the separation method used affects the extent of stabilizer that remains adsorbed to the nanoparticles, but both separa...
Zero valent iron nanoparticles (nZVI) represent a promising agent for environmental remediation. Nev...
Here, we report the fabrication of nZVI by the wet chemical technique in the presence of ethanol usi...
Conventional methods for the preparation and stabilization of amorphous nanoscale zero-valent iron (...
Zero-valent iron (ZVI) nanoparticles are susceptible to oxidation and are therefore sensitive to pos...
Zero valent iron (ZVI) nanoparticles are versatile in their ability to remove a wide variety of wate...
Many organic micropollutants have recently been identified in natural water sources and treated drin...
The effectiveness of zerovalent iron (ZVI) nanoparticles in applications from water remediation to c...
The effectiveness of zerovalent iron (ZVI) nanoparticles in applications from water remediation to c...
International audienceOxidation behavior of nano-Fe-0 particles in an anoxic environment was determi...
Morphological changes resulting from the oxidation of zero valent iron (ZVI) nanoparticles were meas...
Iron-based metallic and oxide nanoparticles have been shown to have enhanced reactivity towards a va...
Zero valent iron nanoparticles are of increasing interest in clean water treatment applications due ...
' Many studies have used nanoscale zero valent iron (nZVI) nanoparticles to remove redox-sensitive m...
Addition of nanoparticulate zero-valent iron (nZVI) to oxygen-containing water results in oxidation ...
Conventional methods for the preparation and stabilization of amorphous nanoscale zero-valent iron (...
Zero valent iron nanoparticles (nZVI) represent a promising agent for environmental remediation. Nev...
Here, we report the fabrication of nZVI by the wet chemical technique in the presence of ethanol usi...
Conventional methods for the preparation and stabilization of amorphous nanoscale zero-valent iron (...
Zero-valent iron (ZVI) nanoparticles are susceptible to oxidation and are therefore sensitive to pos...
Zero valent iron (ZVI) nanoparticles are versatile in their ability to remove a wide variety of wate...
Many organic micropollutants have recently been identified in natural water sources and treated drin...
The effectiveness of zerovalent iron (ZVI) nanoparticles in applications from water remediation to c...
The effectiveness of zerovalent iron (ZVI) nanoparticles in applications from water remediation to c...
International audienceOxidation behavior of nano-Fe-0 particles in an anoxic environment was determi...
Morphological changes resulting from the oxidation of zero valent iron (ZVI) nanoparticles were meas...
Iron-based metallic and oxide nanoparticles have been shown to have enhanced reactivity towards a va...
Zero valent iron nanoparticles are of increasing interest in clean water treatment applications due ...
' Many studies have used nanoscale zero valent iron (nZVI) nanoparticles to remove redox-sensitive m...
Addition of nanoparticulate zero-valent iron (nZVI) to oxygen-containing water results in oxidation ...
Conventional methods for the preparation and stabilization of amorphous nanoscale zero-valent iron (...
Zero valent iron nanoparticles (nZVI) represent a promising agent for environmental remediation. Nev...
Here, we report the fabrication of nZVI by the wet chemical technique in the presence of ethanol usi...
Conventional methods for the preparation and stabilization of amorphous nanoscale zero-valent iron (...