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Beilstein J. Nanotechnol. 2024, 15, 490–499, doi:10.3762/bjnano.15.44
Figure 1: SEM images of ZnS microtetrapods obtained from ZnO microtetrapods after a technological procedure c...
Figure 2: (a, c) XRD patterns of a ZnS aeromaterial sample produced in the 4 h procedure. (b, d) XRD pattern ...
Figure 3: Results of the WPPF weight fraction analysis performed for the sample produced in the 8 h technolog...
Figure 4: PL spectra of samples prepared in (a) the 4 h procedure and (b) the 8 h procedure measured in the d...
Figure 5: PL spectra of samples prepared in (a) the 4 h procedure and (b) the 8 h procedure measured in the d...
Figure 6: PL spectra of samples prepared in (a) the 4 h procedure and (b) the 8 h procedure measured in the n...
Figure 7: PL spectra of samples prepared in the 4 h procedure (curve 1) and the 8 h procedure (curve 2) measu...
Figure 8: Schemes of deep energy levels and electronic transitions under (a) resonant and (b) intraband excit...
Beilstein J. Nanotechnol. 2014, 5, 402–406, doi:10.3762/bjnano.5.47
Figure 1: Photograph of colloidal ZnO /PVP nanoparticles (a), and luminescence under UV excitation with a HBO...
Figure 2: PL spectrum of PVP-capped ZnO nanoparticles (sample 1, curve 1) and PL spectra of ZnO bulk crystal ...
Figure 3: PL spectrum of methanol (1), PVP (2) and colloidal ZnO/PVP/methanol (3) at 300 K (Sample 1).
Figure 4: Typical powder diffraction pattern of ZnO/PVP NPs.
Figure 5: FTIR spectra of pure ZnO nanoparticles (1), ZnO/PVP composite (2), and pure PVP (3).