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Beilstein J. Nanotechnol. 2022, 13, 549–559, doi:10.3762/bjnano.13.46
Figure 1: (a) Synthesis of functionalized GNPs-GSH-Rh6G2; (b) fluorescence spectra of GNPs, Rh6G2, GSH-Rh6G2,...
Figure 2: DLS of (a) GNPs, (b) GNPs-GSH, and (c) GNPs-GSH-Rh6G2 (insets: TEM images); (d) zeta potential of G...
Figure 3: (a) Fluorescence intensity of GNPs-GSH-RH6G2 as function of the ratio between nGSH and nRh6G2 (nGNPs...
Figure 4: Fluorescence intensity of GNP-GSH-Rh6G2 in HEPES/CH3OH buffer (1:1 (v/v), 50 mM) as a function of (...
Figure 5: (a) Fluorescence spectra of GNPs-GSH-Rh6G2 with different ions (Hg2+, Na+, Cu2+, Zn2+, Mn2+, Mg2+, ...
Figure 6: Real-time fluorescence imaging of HeLa cells treated with (a–c) GSH-Rh6G2 and (d–f) GNPs-GSH-Rh6G2 ...
Figure 7: Fluorescence intensity of RGCOOH released from GNPs-GSH-Rh6G2 in the presence of Hg2+ within 35 h a...
Figure 8: (a) Schematic illustration of the release mechanism of GNPs-GSH-Rh6G2 in the presence of Hg2+; (b) ...
Beilstein J. Nanotechnol. 2021, 12, 462–472, doi:10.3762/bjnano.12.37
Scheme 1: Schematic illustration of the synthesis and photothermal of the Au@Pt NRs.
Figure 1: TEM images of (a) AuNRs, (b) Au@Pt−Ag+, and (c) Au@Pt+Ag+. (d) Absorption spectra of AuNRs (black),...
Figure 2: (a) Absorption spectra of AuNRs and of Au@Pt NRs synthesized with different concentrations of Ag+. ...
Figure 3: Absorption spectra of AuNRs and of different Au@Pt NRs synthesized in (a) absence and (c) presence ...
Figure 4: (a) Absorption spectra of AuNRs and of Au@Pt NRs prepared under optimal conditions. (b) TEM image o...
Figure 5: (a) Temperature elevation curves of deionized water (black), AuNRs solution (OD = 0.5, red) and Au@...
Figure 6: Heating and cooling curves of (a) AuNRs and (c) Au@Pt NRs under 808 nm laser irradiation. Linear fi...
Figure 7: Temperature change curve of (a) Au@Pt NPs solution and (b) AuNRs solution during four on/off cycles...