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Beilstein J. Nanotechnol. 2026, 17, 781–795, doi:10.3762/bjnano.17.55
Figure 1: Photomicrographs of SageAgNPs6mJ and dwAgNPs6mJ two days after synthesis (a and d, scale bar 20 nm)...
Figure 2: Cell viability after treatment with SageAgNPs6mJ, dwAgNPs6mJ, and sage extract at concentrations co...
Figure 3: Ki-67 immunofluorescent staining of untreated GFCs after 24 h (a) and 48 h (c) and GFCs treated wit...
Figure 4: Photomicrographs of type-I collagen immunofluorescent staining of GFCs treated with SageAgNPs6mJ fo...
Figure 5: IL-1β (a) and IL-6 values (b) in cell culture supernatants after treatment with EcLPS (10 µg·mL−1) ...
Beilstein J. Nanotechnol. 2026, 17, 622–634, doi:10.3762/bjnano.17.43
Figure 1: Structure of rhodamine B.
Figure 2: SEM micrograph with corresponding EDS elemental mapping of the Ag@TiO2 200p plate. (a) Surface afte...
Figure 3: SEM micrograph with corresponding EDS elemental mapping of the Ag@TiO2 2000p plate. (a) Surface aft...
Figure 4: (a, d) Cross-sectional TEM micrographs, (b, e) HRTEM images, and (c, f) SAED diffraction patterns o...
Figure 5: STEM-HAADF images and STEM-EDS compositional maps of titanium, oxygen, and silver of synthesized (a...
Figure 6: Particle size distribution of Ag@TiO2 nanoparticles determined by dynamic light scattering (DLS). (...
Figure 7: (a) UV–vis absorbance spectra and (b) bandgap energy of TiO2 and Ag@TiO2 NPs samples.
Figure 8: Photocatalytic degradation of RhB with (a) Ag@TiO2 200p NPs and (b) Ag@TiO2 2000p NPs, (c) photocat...
Figure 9: Schematic of the experimental setup.