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Beilstein J. Nanotechnol. 2020, 11, 631–650, doi:10.3762/bjnano.11.50
Figure 1: Schematic of the preparation of heterostructured CuO–ZnO-loaded CNFMs.
Figure 2: SEM images of electrospun CNFMs with different PVDF/PAN weight ratios: (a) 9:1; (b) 7:3; (c) 5:5; (...
Figure 3: Pore size distributions of CNFMs with different PVDF/PAN weight ratios.
Figure 4: Contact angles of CNFMs with different PVDF/PAN weight ratios: (a) 9:1; (b) 7:3; (c) 5:5; (d) 3:7; ...
Figure 5: Mechanical properties of the CNFMs with different PVDF/PAN weight ratios: (a) 9:1; (b) 7:3; (c) 5:5...
Figure 6: SEM images of the electrospun CNFMs with different weight ratios of Cu(Ac)2/Zn(Ac)2 to PAN/PVDF: (a...
Figure 7: FTIR spectra of the CNFMs with different weight ratios [Cu(Ac)2/Zn(Ac)2]/[PVDF/PAN]: (a) 0:1; (b) 1...
Figure 8: XRD spectra of the CNFMs with different [Cu(Ac)2/Zn(Ac)2]/[PVDF/PAN] weight ratios: (a) 0:1; (b) 1:...
Figure 9: XRD spectra of (a) pure Cu(Ac)2 powder and (b) pure Zn(Ac)2 powder.
Figure 10: SEM images of PVDF/PAN CNFMs with CuO and ZnO nanoparticles obtained after 2 h of heat treatment at...
Figure 11: FTIR spectra of (a) CNFMs with heat treatment for 2 h at 140 °C; (b) CNFMs without heat treatment; ...
Figure 12: XRD spectra of (a) the CNFMs after heat treatment for 2 h at 140 °C; (b) the CNFMs without heat tre...
Figure 13: Mechanical properties of the CNFMs obtained after heat treatment for 2 h at different temperatures:...
Figure 14: Contact angles of (a) the CNFMs without heat treatment and (b-g) the CNFMs with heat treatment for ...
Figure 15: SEM images of PVDF/PAN CNFMs with CuO and ZnO nanoparticles obtained after heat treatment at 130 °C...
Figure 16: SEM images of heterostructured CuO–ZnO-loaded CNFMs obtained using different dilutions of the growt...
Figure 17: SEM images of heterostructured CuO–ZnO-loaded CNFMs after hydrothermal synthesis at different tempe...
Figure 18: SEM images of heterostructured CuO–ZnO-loaded CNFMs after different times of hydrothermal synthesis...
Figure 19: X-ray diffraction pattern of heterostructured CuO–ZnO-loaded CNFMs.
Figure 20: Elemental compositions of CNFMs with different CuO–ZnO heterostructures.
Figure 21: Morphologies and CA of CNFMs before and after heat treatment, and after hydrothermal growth: (a) wi...
Figure 22: Mechanism of the hydrophilicity of CNFMs with CuO–ZnO heterostructures.
Figure 23: Left: degradation rate of methyl orange solutions using samples A, B, C and D as a function of the ...
Figure 24: Mechanism of the photocatalytic degradation of methyl orange using the heterostructured CuO–ZnO-loa...