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1.
Sci Rep ; 4: 5328, 2014 Jun 17.
Article in English | MEDLINE | ID: mdl-24937637

ABSTRACT

We observed interfacial chemical sharpening due to uphill diffusion in post annealed ultrathin multilayer stack of Co and Pt, which leads to enhanced interfacial perpendicular magnetic anisotropy (PMA). This is surprising as these elements are considered as perfectly miscible. This chemical sharpening was confirmed through quantitative energy dispersive x-ray (EDX) spectroscopy and intensity distribution of images taken on high angle annular dark field (HAADF) detector in Scanning Transmission Electron Microscopic (STEM) mode. This observation demonstrates an evidence of miscibility gap in ultrathin coherent Co/Pt multilayer stacks.

2.
J Nanosci Nanotechnol ; 5(2): 288-95, 2005 Feb.
Article in English | MEDLINE | ID: mdl-15853150

ABSTRACT

Seven variable parameters of the chemical vapor deposition system have been optimized with the help of the Taguchi analytical method for getting a desired product, e.g., carbon nanotubes or carbon nanobeads. It is observed that almost all selected parameters influence the growth of carbon nanotubes. However, among them, the nature of precursor (racemic, R or Technical grade camphor) and the carrier gas (hydrogen, argon and mixture of argon/hydrogen) seem to be more important parameters affecting the growth of carbon nanotubes. Whereas, for the growth of nanobeads, out of seven parameters, only two, i.e., catalyst (powder of iron, cobalt, and nickel) and temperature (1023 K, 1123 K, and 1273 K), are the most influential parameters. Systematic defects or islands on the substrate surface enhance nucleation of novel carbon materials. Quantitative contributions of process parameters as well as optimum factor levels are obtained by performing analysis of variance (ANOVA) and analysis of mean (ANOM), respectively.


Subject(s)
Carbon/chemistry , Crystallization/methods , Nanotechnology/methods , Nanotubes, Carbon/chemistry , Nanotubes/chemistry , Argon/chemistry , Camphor/chemistry , Catalysis , Cobalt/chemistry , Hydrogen/chemistry , Iron/chemistry , Microscopy, Electron, Scanning , Nickel/chemistry , Stereoisomerism , Temperature , Volatilization
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