DocumentCode
2369690
Title
Growth and magnetic properties of ferromagnetic Co nanorods filled inside carbon nanotubes towards nanoscale spintronics
Author
Hayashi, Yasuhiko ; Fujita, T. ; Tokunaga, T. ; Rupesinghe, N.L. ; Teo, K.B.K. ; Amaratunga, G.A.J. ; Tanemura, M.
Author_Institution
Dept. of Environ. Technol. & Urban Planning, Nagoya Inst. of Technol., Nagoya
fYear
2008
fDate
24-27 March 2008
Firstpage
1051
Lastpage
1055
Abstract
We synthesize Co nanorod filled inside multi-walled CNTs (MWCNTs) by microwave plasma enhanced chemical vapor deposition (MPECVD) and utilize off-axis electron holography to observe the remanent states of the filled metal nanorod inside MWCNTs at room. The MWCNTs grew up to 100 - 110 nm in diameter and 1.5 - 1.7 mum in length. The typical bright-field transmission electron microscope (TEM) images revealed both Co/Pd multisegment nanorod and Co nanorod filled inside MWCNTs on the same substrate. We have also performed energy-dispersive X-ray spectrometer (EDS) measurements to characterize the composition of metal filled inside MWCNTs. Based on high-resolution TEM measurements, we observed the face-centered-cubic (fcc) Co filled inside MWCNT. The component of magnetic induction was then measured to be 1.2plusmn0.1 T, which is lower than the expected saturation magnetization of fcc Co of 1.7 T. The partial oxidation of the ferromagnetic metal during the process and the magnetization direction may play an important role in the determination of the quality of the remanent states.
Keywords
X-ray spectroscopy; carbon nanotubes; cobalt; ferromagnetic materials; magnetoelectronics; plasma CVD; transmission electron microscopy; Co; bright-field transmission electron microscope; carbon nanotubes; energy-dispersive X-ray spectrometer; ferromagnetic nanorods; filled metal nanorod; magnetic properties; microwave plasma enhanced chemical vapor deposition; multi-walled CNT; multisegment nanorod; nanoscale spintronics; off-axis electron holography; partial oxidation; Carbon nanotubes; Chemical vapor deposition; Holography; Magnetic properties; Magnetoelectronics; Performance evaluation; Plasma chemistry; Plasma properties; Saturation magnetization; Transmission electron microscopy;
fLanguage
English
Publisher
ieee
Conference_Titel
Nanoelectronics Conference, 2008. INEC 2008. 2nd IEEE International
Conference_Location
Shanghai
Print_ISBN
978-1-4244-1572-4
Electronic_ISBN
978-1-4244-1573-1
Type
conf
DOI
10.1109/INEC.2008.4585664
Filename
4585664
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