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Beilstein J. Nanotechnol. 2024, 15, 817–829, doi:10.3762/bjnano.15.68
Figure 1: Raman spectroscopy for a) MoS2, b) WS2, and c) MoS2/WS2 composite.
Figure 2: XRD diagrams for a) MoS2, b) WS2, and c) MoS2/WS2 composite.
Figure 3: XPS surveys and element edges a–c) MoS2, d–f) WS2, and g–j) MoS2/WS2 composite.
Figure 4: SEM images of exfoliated samples of a) MoS2, b) WS2, and c) MoS2/WS2 composite.
Figure 5: Low- and high-magnification TEM micrographs of a,b) MoS2; c,d) WS2; and e,f) MoS2/WS2 composite. g–...
Figure 6: PD of MB recorded under solar simulator excitation: MB absorbance variation at various durations us...
Figure 7: Change in concentration ratio during PD experiments for a) MoS2 and c) WS2 photocatalysts and the c...
Figure 8: a) PD efficiencies and PD rate-constant variations obtained under solar simulator excitation for (M...
Figure 9: PD efficiency of MB recorded for (MoS2)0.2/(WS2)0.8 (blue dots) and the relative MB concentration c...
Figure 10: Proposed PD mechanisms of MB by MoS2/WS2 catalysts.
Figure 11: PD stability comparison between WS2, MoS2 and WS2/MoS2 composite samples.
Figure 12: Schematic diagram of the photocatalyst preparation.
Beilstein J. Nanotechnol. 2018, 9, 1686–1694, doi:10.3762/bjnano.9.160
Figure 1: (a–c) Typical field-emission SEM images with different magnifications of MoS2 NSs grown by double s...
Figure 2: MoS2 NSs grown by double sulfurization of a 50 nm Mo film at 850 °C on SiO2/Si substrates: (a) typi...
Figure 3: MoS2 sample grown by double sulfurization of a 50 nm Mo film at 850 °C on SiO2/Si substrates: (a) P...
Figure 4: MoS2 sample grown by double sulfurization of a 50 nm Mo film at 850 °C on SiO2/Si substrates: (a) H...
Figure 5: Photographs of (a) wet chemically transferred MoS2 sample on the FTO/glass substrate, the FTO film ...
Figure 6: (a) Field-emission current density as a function of the electric field for the transferred MoS2 NSs...