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Beilstein J. Nanotechnol. 2021, 12, 798–807, doi:10.3762/bjnano.12.63
Figure 1: Crystal structure of halloysite particles.
Figure 2: Layout of sample dimensions (in mm × mm) and preparation for the polymer antimicrobial test showing...
Figure 3: XRD patterns of HNT-8 and Ag/HNT-8.
Figure 4: TEM images of (a) HNT-0, (b) Ag/HNT-0, (c) HNT-4, (d) Ag/HNT-4, (e) HNT-8, and (f) Ag/HNT-8. The in...
Figure 5: DSC and TGA measurements of Ag-NP formation on HNT-8 substrate from room temperature up to 600 °C i...
Figure 6: Image of AgNP/HNT-8 with different colours after the synthesis process was interrupted at 40, 100, ...
Figure 7: Scanning electron microscopy of (a) Ag/HNT-8-doped LDPE and (b) Ag/HNT-8/DIO-doped LDPE.
Figure 8: Molecular structures of polyethylene and dodecanethiol, and scheme of Ag-NPs coated with dodecaneth...
Beilstein J. Nanotechnol. 2017, 8, 2126–2138, doi:10.3762/bjnano.8.212
Figure 1: (a) Optical image of the back-gate GaAs:Mg nanowire FET device. The inset shows an illustrative TEM...
Figure 2: Scanning electron images of GaAs nanowires grown on GaAs(111)B (a,c) and on Si(111) (b,d) substrate...
Figure 3: (a), (b) Grazing incidence X-ray diffraction diffractograms (ω/2θ) measured for samples A and B, re...
Figure 4: (a) p-type characteristic curves Ids–Vg of a FET based on the Mg-doped single GaAs nanowire #1 grow...
Figure 5: PL spectra of Mg-doped GaAs nanowires measured at ≈6 K under an excitation power of ≈27.7 mW, for (...
Figure 6: Dependence on the excitation power of the peak energy for (a) sample A and (b) sample B, and of the...
Figure 7: Dependence on the temperature of the peak energy for (a) sample A and (b) sample B, and of the PL i...