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Beilstein J. Nanotechnol. 2026, 17, 343–351, doi:10.3762/bjnano.17.23
Figure 1: Measured S11 plot of the CNS sample (green line) and the MWCNT film grown on Si substrate (blue lin...
Figure 2: S11 reflection spectra collected on the as-grown CNS sample (green line) and acquired at different ...
Figure 3: SEM micrographs of the CNS sample. (a) As-grown sample and (b) after ethanol treatment. Both images...
Figure 4: Raman spectra of the CNS sample (a) before and (b) after ethanol treatment.
Figure 5: C 1s and O 1s core level spectra obtained from (a, c) the as-grown samples and (b, d) after ethanol...
Figure 6: Results of the CNS as a signal receiver positioned (a) 30 cm and (b) 70 cm away from the emitting a...
Beilstein J. Nanotechnol. 2021, 12, 366–374, doi:10.3762/bjnano.12.30
Figure 1: SEM images of the morphological evolution of strained Mn wetting layers with different thickness af...
Figure 2: X-ray diffraction pattern of the 9 ML thick Mn wetting layer, upon annealing at 650 °C for 15 min. ...
Figure 3: SEM images of the surface after deposition of 4.5 ML Mn on Ge(111) wafer and annealing at 650 °C fo...
Figure 4: (a) SEM image of a typical NW, ≃700 nm long, obtained by deposition of a 4.5 ML thick Mn film follo...
Figure 5: EDX elemental map (Kα line), carried out on a cross-section of a NW on the surface of the 4.5 ML th...
Figure 6: Cross-section image of the NW along its length. (a) TEM image of a 1.15 μm long NW capped with a Pt...
Figure 7: (a) Length (t) and width (s) of Mn5Ge3 islands, formed on the sample surface of the 4.5 ML thick Mn...