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Beilstein J. Nanotechnol. 2024, 15, 678–693, doi:10.3762/bjnano.15.56
Figure 1: (a) Seed-mediated synthesis of CTAB-AuNM, MTAB-AuNM, and DTAB-AuNM, a two-step reduction method sho...
Figure 2: Stability of AuNMs (CTAB-AuNM, MTAB-AuNM, and DTAB AuNM) in different media at the ratio (NPs:media...
Figure 3: (a) k-CG hydrogel beads (HB) without AuNMs and with incorporated AuNMs; (b), (c), and (d) show stab...
Figure 4: TEM micrographs along with histograms showing morphology and size (length) of (a) CTAB-AuNM, (b) MT...
Figure 5: (a) FTIR spectra of CTAB-AuNM, MTAB-AuNM, and DTAB-AuNM, respectively. (b) XRD diffractogram showin...
Figure 6: Growth mechanism of gold nanomakura particles (AuNM). (a) AuNM surrounded by surfactant micelles; (...
Figure 7: (a) Seed-mediated synthesis of CTAB-capped AuNR. (b) Seedless synthesis of DTAB-capped AuNR. (c) Ab...
Figure 8: Anisotropic gold nanoparticles showing photothermal response of: (a) CTAB-AuNM, MTAB-AuNM, and DTAB...
Figure 9: (a) Temporal variation in the corresponding temperatures on photothermal interaction with a visible...
Figure 10: Thermal images showing photothermal response in (a) DTAB-AuNR and (b) CTAB-AuNR after incorporation...
Figure 11: Thermal images showing photothermal response in (a) CTAB-AuNM, (b) MTAB-AuNM, and (c) DTAB-AuNM aft...
Beilstein J. Nanotechnol. 2021, 12, 924–938, doi:10.3762/bjnano.12.69
Figure 1: Number of publications over the last five years on the synthesis of nanoparticles (NPs)/nanomateria...
Figure 2: Cytotoxicity of anisotropic gold metal nanoparticles in vitro and in vivo.
Figure 3: Synthesis of gold nanoparticles of different shapes using the seed-mediated approach. Chitosan was ...
Figure 4: A deep eutectic solvent as green solvent in the synthesis of anisotropic nanoparticles (flower shap...
Figure 5: Carrageenan as capping and reducing agent for gold nanoparticle synthesis. (A) Histogram for the si...
Figure 6: (A) A κ-carrageenan-stabilized hydroxyapatite rod-shaped nanocomposite. (B) Antibacterial study usi...