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Beilstein J. Nanotechnol. 2019, 10, 379–388, doi:10.3762/bjnano.10.37
Figure 1: FESEM images of the (a) square-shaped NWs grown at 950 °C, (b) cylindrical- shaped NWs grown at 100...
Figure 2: TEM images of square-shaped NWs. (a) Low-magnification image of a single NW. (b) HRTEM image of a N...
Figure 3: TEM images of cylindrical-shaped NWs. (a) HRTEM of NWs across the width. (b) HRTEM image of NWs. In...
Figure 4: TEM images of belt-shaped NWs grown at 1000 °C. (a) HRTEM image of the NB. (b) SAED pattern of NBs ...
Figure 5: Schematic of the VLS growth mechanism for (a) square and (b) cylinder shaped NWs.
Figure 6: Waveguide nature of the various NBs. (a) Tapered NB, (b) ‘V’-shaped NB, (c) NB of length 120 µm, (d...
Figure 7: Waveguide nature of (a), (b) square-shaped NWs and (c), (d) cylindrical-shaped NWs.
Figure 8: Temperature-dependent PL of the (a) belt-shaped NWs, (b) cylindrical-shaped NWs, (c) square-shaped ...
Beilstein J. Nanotechnol. 2017, 8, 1658–1670, doi:10.3762/bjnano.8.166
Figure 1: Scanning electron micrographs of the samples grown at different substrate temperatures (a,b) 600 °C...
Figure 2: Transmission electron micrograph of (a,b) the nanographitic layer and (c,d) vertical graphene nanos...
Figure 3: (a) Raman spectra of VGNs grown at different substrate temperatures. (b) Values of full widths at h...
Figure 4: Schematic of (a) effect of process parameters on the growth and (b) growth mechanism of vertical gr...
Figure 5: Scanning electron micrographs and corresponding cross sections of VGNs grown at different distances...
Figure 6: (a) Raman spectra of VGNs grown at different distance, (b) variation of FWHM of D, G, and G′ band a...
Figure 7: Scanning electron micrographs of VGNs grown at microwave powers of (a) 200 W, (b) 250 W, (c) 320 W,...
Figure 8: (a) Raman spectra of VGNs grown at a microwave power of 200 W, 250 W, 320 W, 375 W, 425 W and 475 W...
Figure 9: Water contact angle for the (a) nanographitic film (NG), grown at 600 °C and (b) VGNs, grown at 800...
Figure 10: I–V characteristics of vertical graphene nanosheets from four-probe measurements.