Environmental Technology & Innovation · 2015 · 74 citations · 8 references
Chemical EngineeringEngineeringMetal NanoparticlesSalvia OfficinalisWater PurificationGreen SynthesisBio-based NanomaterialsWater TreatmentSurface ChargeChemistryFe–p Nps ColloidIron–polyphenol Complex NanoparticlesPhytochemicalMineral ProcessingAdsorptionPhytochemistryPolyphenolicsFe–p Nps
In this paper iron–polyphenol complex nanoparticles (Fe–P NPs) were synthesized by Sage (Salvia officinalis) leaf extract, which have excellent adsorptive-flocculation capacity for water treatment. They were characterized using scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), Fourier transform infrared Spectroscopy (FTIR) and X-ray diffraction (XRD) so that their surface properties could be understood. It was found that synthesized Fe–P NPs were cross-linked in colloid with spherical particles ranged from 5 to 25 nm. Their surfaces were capped with O–H groups. Dried powder derived from Fe–P NPs colloid can remain stable after several hours and then be partially oxidized to iron oxide on exposure to air. Removal of cationic dye ethyl violet with Fe–P NPs was tested to confirm that the surface charge on Fe–P NPs is positive.
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Self‐Assembled 3D Flowerlike Iron Oxide Nanostructures and Their Application in Water Treatment
Lu-Bin Zhong, Jin‐Song Hu, H. Liang et al. · Advanced Materials · 2006 · 1.6K citations
Zhiqiang Wang, Cheng Fang, Mallavarapu Megharaj · ACS Sustainable Chemistry & Engineering · 2014 · 245 citations
Complex Nanoparticles, Chemical Engineering, Advanced Oxidation Process +14