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Beilstein J. Nanotechnol. 2017, 8, 826–856, doi:10.3762/bjnano.8.85
Figure 1: The comparison of the VLS mechanism of the SWCNT growth on the metallic catalytic particle (a) and ...
Figure 2: The melting temperature of iron, nickel, gold and silver particles as a function of the diameter. T...
Figure 3: (a,b) Environmental TEM images of Ni crystalline nanoparticles recorded at 615 °C. White lines mark...
Figure 4: Calculated changes in Gibbs free energy for the reaction of Ni with (a) C2H2, (b) C2H4, (c) CH4 and...
Figure 5: (a) In situ HRTEM micrographs of the nucleation and growth of an individual SWCNT on the catalyst n...
Figure 6: (a–c) The environmental HRTEM image sequence of the consecutive stages of the base-growth of SWCNT ...
Figure 7: The HRTEM images of Pt acetylacetonate-filled SWCNTs ex situ annealed at 700 °C for 2 h (a) and in ...
Figure 8: (a) The RBM-band of Raman spectra of the pristine, nickelocene-filled SWCNTs and samples annealed a...
Figure 9: (a) The Ni 2p XPS spectra of the pristine, nickelocene-filled SWCNTs and samples annealed at temper...
Figure 10: Time evolution of the height (yield) of SWCNT forest. Plot of the height of SWCNT forest as a funct...
Figure 11: The plots of the growth rate as a function of synthesis temperature for the nanotubes grown via pyr...
Figure 12: The Arrhenius plot for the growth rates of MWCNTs synthesized by thermal CVD using C2H2 as carbon s...
Figure 13: (a) The plot of the RBM peak intensities as a function of transformation time for the (7,2) and (8,...
Figure 14: (a) The RBM-band of Raman spectra of the pristine, NiCp2-filled SWCNTs and samples annealed at temp...