Abstract
Well-graphitized core/shell iron/carbon nanoparticles (Fe@CNPs) were formed in toluene solutions containing Fe(CO)5-C60/70 via an novel microwave arcing process. High temperature γ-Fe phase was found to be stable at room temperature when encapsulated inside graphene shells. In the absence of C60/70, the structures of graphene shells are poor. Pre-synthesized Co nanoparticles were used as templates for the growth of graphene shells in toluene-C60/70 solutions. Via acid etching and removal of the central core Co nanoparticles, hollow carbon nanoparticles could be obtained. Further thermal annealing by focused microwave irradiation leads to merging of small core/shell metal/carbon nanoparticles into large ones, as well as conversion of body centered cubic (bcc) α-Fe to face centered cubic (fcc) γ-Fe. The possible growth mechanisms of core/shell metal/carbon nanoparticles were discussed. © 2008 Wiley-VCH Verlag GmbH & Co. KGaA.
Cite
CITATION STYLE
Hsin, Y. L., Lin, C. F., Liang, Y. C., Hwang, K. C., Horng, J. C., Ho, J. A. A., … Hwu, J. R. (2008). Microwave arcing induced formation and growth mechanisms of core/shell metal/carbon nanoparticles in organic solutions. Advanced Functional Materials, 18(14), 2048–2056. https://doi.org/10.1002/adfm.200701407
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.