Magnetic graphene nanoplatelet composites (MGNCs) decorated with core-shell Fe-Fe2O3 nanoparticles (NPs) have been synthesized using a facile one-pot thermal decomposition method. The graphene nanoplatelets (GNPs) decorated with uniformly dispersed NPs are observed to exhibit a strong magnetization and can be magnetically separated from the liquid mixture by a permanent magnet. These MGNCs demonstrate an effective and efficient adsorption of arsenic(III) in the polluted water due to the increased adsorption sites in the presence of magnetic NPs. The adsorption behavior is well fitted with both Langmuir and Freundlich models, which show a significantly higher adsorption capacity (11.34 mg/g) than the other adsorption values reported on the c...
Arsenic in water is currently a global concern due to the long-term exposure that could affect human...
A graphene nanoplate-supported spinel CuFe2O4 composite (GNPs/CuFe2O4) was successfully synthesized ...
New-generation adsorbent, Fe3O4@SiO2/GO, was developed by modification of graphene oxide (GO) with s...
Magnetic graphene nanoplatelet composites (MGNCs) decorated with core-shell Fe-Fe2O3 nanoparticles (...
Magnetite-graphene hybrids have been synthesized via a chemical reaction with a magnetite particle s...
Graphene nanoplates (GNPs) can be used as a platform for homogeneous distribution of adsorbent nanop...
We show that the hybrids of single-layer graphene oxide with manganese ferrite magnetic nanoparticle...
A magnetic graphene oxide (MGO) was developed for the adsorption of As(III) from aqueous solution. T...
Arsenic contamination of drinking water is a major public health concern affecting more than 200 mil...
Chitosan-magnetic-graphene oxide (CMGO) nanocomposite was prepared for arsenic adsorption. The nanoc...
Publication Date (Web): April 14, 2015Arsenic (As) is the world's most hazardous chemical found in d...
We show that the hybrids of single-layer graphene oxide with manganese ferrite magnetic nanoparticle...
Abstract: Arsenic (As) contamination in groundwater is a great environmental health concern and is o...
A magnetite graphene oxide chitosan (MGOCS) composite microsphere was specifically prepared to effic...
© 2017 Canadian Institute of Mining, Metallurgy and Petroleum Arsenic adversely affects gold mining ...
Arsenic in water is currently a global concern due to the long-term exposure that could affect human...
A graphene nanoplate-supported spinel CuFe2O4 composite (GNPs/CuFe2O4) was successfully synthesized ...
New-generation adsorbent, Fe3O4@SiO2/GO, was developed by modification of graphene oxide (GO) with s...
Magnetic graphene nanoplatelet composites (MGNCs) decorated with core-shell Fe-Fe2O3 nanoparticles (...
Magnetite-graphene hybrids have been synthesized via a chemical reaction with a magnetite particle s...
Graphene nanoplates (GNPs) can be used as a platform for homogeneous distribution of adsorbent nanop...
We show that the hybrids of single-layer graphene oxide with manganese ferrite magnetic nanoparticle...
A magnetic graphene oxide (MGO) was developed for the adsorption of As(III) from aqueous solution. T...
Arsenic contamination of drinking water is a major public health concern affecting more than 200 mil...
Chitosan-magnetic-graphene oxide (CMGO) nanocomposite was prepared for arsenic adsorption. The nanoc...
Publication Date (Web): April 14, 2015Arsenic (As) is the world's most hazardous chemical found in d...
We show that the hybrids of single-layer graphene oxide with manganese ferrite magnetic nanoparticle...
Abstract: Arsenic (As) contamination in groundwater is a great environmental health concern and is o...
A magnetite graphene oxide chitosan (MGOCS) composite microsphere was specifically prepared to effic...
© 2017 Canadian Institute of Mining, Metallurgy and Petroleum Arsenic adversely affects gold mining ...
Arsenic in water is currently a global concern due to the long-term exposure that could affect human...
A graphene nanoplate-supported spinel CuFe2O4 composite (GNPs/CuFe2O4) was successfully synthesized ...
New-generation adsorbent, Fe3O4@SiO2/GO, was developed by modification of graphene oxide (GO) with s...