Here we report a solution-phase strategy for depositing ultrathin graphene-like carbon onto iron oxide nanocrystals (NCs) for corrosion resistance in magnetic and electrocatalytic applications. Thermal decomposition of iron carboxylates is a well-known method for generating uniform, size-tunable iron oxide NCs. When this reaction is completed at elevated temperatures and for longer times, the nanomaterials become unreactive to further growth and the magnetic nanomaterial survives treatment with concentrated nitric acid. X-ray photoelectron and Raman spectroscopies reveal that these materials contain graphene-like carbon. Metal carboxylates can decompose and yield carbon monoxide (CO), which we detect via gas chromatography–mass spectrometry...
© 2019 The Royal Society of Chemistry and the Centre National de la Recherche Scientifique. In bulk,...
Stabilizing nanoparticles on surfaces, such as graphene, is a growing field of research. Thereby, ir...
Stabilizing nanoparticles on surfaces, such as graphene, is a growing field of research. Thereby, ir...
Here we report a solution-phase strategy for depositing ultrathin graphene-like carbon onto iron oxi...
We report a facile approach for the in situ synthesis of very small iron oxide nanoparticles on the ...
We present a novel and facile synthesis methodology for obtaining graphitic carbon structures from F...
Magnetic iron oxide nanoparticles (NPs) with narrow size distribution (8 +/- 2 nm), well defined che...
We report a facile approach for the in situ synthesis of very small iron oxide nanoparticles on the ...
© 2018 American Chemical Society. Stabilizing nanoparticles on surfaces, such as graphene, is a grow...
We report a facile approach for the in situ synthesis of very small iron oxide nanoparticles on the ...
We report a facile approach for the in situ synthesis of very small iron oxide nanoparticles on the ...
We report a facile approach for the in situ synthesis of very small iron oxide nanoparticles on the ...
12923-12931In bulk, face-centered gamma-iron exists only at temperatures above 917 ?C, returning bac...
We report a facile approach for the in situ synthesis of very small iron oxide nanoparticles on the ...
In bulk, face-centered gamma-iron exists only at temperatures above 917 ?C, returning back to body-c...
© 2019 The Royal Society of Chemistry and the Centre National de la Recherche Scientifique. In bulk,...
Stabilizing nanoparticles on surfaces, such as graphene, is a growing field of research. Thereby, ir...
Stabilizing nanoparticles on surfaces, such as graphene, is a growing field of research. Thereby, ir...
Here we report a solution-phase strategy for depositing ultrathin graphene-like carbon onto iron oxi...
We report a facile approach for the in situ synthesis of very small iron oxide nanoparticles on the ...
We present a novel and facile synthesis methodology for obtaining graphitic carbon structures from F...
Magnetic iron oxide nanoparticles (NPs) with narrow size distribution (8 +/- 2 nm), well defined che...
We report a facile approach for the in situ synthesis of very small iron oxide nanoparticles on the ...
© 2018 American Chemical Society. Stabilizing nanoparticles on surfaces, such as graphene, is a grow...
We report a facile approach for the in situ synthesis of very small iron oxide nanoparticles on the ...
We report a facile approach for the in situ synthesis of very small iron oxide nanoparticles on the ...
We report a facile approach for the in situ synthesis of very small iron oxide nanoparticles on the ...
12923-12931In bulk, face-centered gamma-iron exists only at temperatures above 917 ?C, returning bac...
We report a facile approach for the in situ synthesis of very small iron oxide nanoparticles on the ...
In bulk, face-centered gamma-iron exists only at temperatures above 917 ?C, returning back to body-c...
© 2019 The Royal Society of Chemistry and the Centre National de la Recherche Scientifique. In bulk,...
Stabilizing nanoparticles on surfaces, such as graphene, is a growing field of research. Thereby, ir...
Stabilizing nanoparticles on surfaces, such as graphene, is a growing field of research. Thereby, ir...