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Beilstein J. Nanotechnol. 2026, 17, 24–37, doi:10.3762/bjnano.17.3
Figure 1: (a) Scheme of a reduced graphene oxide flake structure with examples of oxygen functionalities, tha...
Figure 2: SEM images of the reduced graphene oxide paper cross sections: (a) T400, (b) T600, and (c) T800.
Figure 3: Thermogravimetric analysis (pink curve) and first derivative of the weight change (blue) of the M30...
Figure 4: Raman spectra with the fitted functions (Table 2). The normalized data are marked with black points. Indiv...
Figure 5: FTIR spectra of the thermally reduced graphene oxide paper samples. The inset graph shows the waven...
Figure 6: Deconvolution of the carbon-related region in the XPS spectra of the samples (a) M300, (b) T400, (c...
Figure 7: Diffractograms of rGO paper samples. Visible changes in the (002) peak shape confirm partial restor...
Figure 8: Results of the galvanostatic charge (green)–discharge (red) tests. The capacity is shown as a funct...
Figure 9: (a) Charge curves for sample T800 and (b, c) differential analysis: (b) differential capacity and (...
Beilstein J. Nanotechnol. 2018, 9, 3079–3094, doi:10.3762/bjnano.9.286
Figure 1: Aspect ratio for a three-dimensional object: .
Figure 2: TEM micrographs of a) HApSA, b) HApSA+Si, c) F201 d) F202, e) GoHAP90s, f) GoHAP375C, g) GoHAP300s,...
Figure 3: SEM micrographs of a) HApSA, b) HApSA+Si, c) F201 d) F202, e) GoHAP90s, f) GoHAP375C, g) GoHAP300s,...
Figure 4: AFM images of 3D and 2D topography: a) HApSA, b) HApSA+Si, c) F201 d) F202, e) GoHAP90s, f) GoHAP37...
Figure 5: From the top, powder XRD patterns of: a) HApSA, b) HApSA+Si, c) F201 d) F202, e) GoHAP90s, f) GoHAP...
Figure 6: Viability of CHO, BEAS-2B, A549 and J774.1 cells, expressed as a percentage of negative control, af...
Figure 7: CLSM image of CHO cells and visible GoHAP90s (50 µg/mL) aggregates and agglomerates. A cell is visi...