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AbstractAbstract
[en] The modification of carbon-based nanomaterials with metals is widely studied due to its unique properties. Here, the modification of carbon nanomaterial with iron oxide has been successfully carried out. This modification was achieved using arc discharge in 50% ethanol liquid media. The anode used in the arc discharge was prepared from a mixture of carbon and iron oxide that was synthesized in electrolysis and was then calcined at 250°C with silicon binder with a mass ratio of 3:1:1, and the cathode used was graphite rod. Both electrodes were set in the nearest gap that could provide an arc during arc-discharging, leading to carbon-based nanoparticle formation. The diffractogram pattern of the X-ray diffraction of the fabricated nanoparticles confirmed the typical peak of carbon, iron oxide and iron. The magnetization value of the result analysis of the vibrating sample magnetometer was 9.9 emu/g. The bandgap energy measurement using diffuse reflectance ultra violet was estimated to be 2.18 eV. Using the transmission electron microscopy, the structure of the nanomaterial produced was observed as carbon-encapsulated iron compound nanoparticles. (paper)
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Source
International conference on advanced materials for better future; Surakarta (Indonesia); 3-4 Oct 2016; Available from http://dx.doi.org/10.1088/1757-899X/176/1/012046; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Literature Type
Conference
Journal
IOP Conference Series. Materials Science and Engineering (Online); ISSN 1757-899X;
; v. 176(1); [5 p.]

Country of publication
ALCOHOLS, CARBON, CHALCOGENIDES, COHERENT SCATTERING, DIFFRACTION, DISPERSIONS, ELECTRON MICROSCOPY, ELEMENTS, FLUIDS, HYDROXY COMPOUNDS, IRON COMPOUNDS, LYSIS, MAGNETOMETERS, MATERIALS, MEASURING INSTRUMENTS, METALS, MICROSCOPY, MINERALS, NONMETALS, ORGANIC COMPOUNDS, OXIDES, OXYGEN COMPOUNDS, PARTICLES, SCATTERING, SEMIMETALS, TRANSITION ELEMENT COMPOUNDS, TRANSITION ELEMENTS
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