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Beilstein J. Nanotechnol. 2024, 15, 719–732, doi:10.3762/bjnano.15.60
Figure 1: Images of aqueous suspension of TiO2/GQDs samples (a) under white light and (b) under UV light. (c)...
Figure 2: (a) XRD patterns of TiO2, GQDs, and (1:4)TiO2/GQDs in suspension form. (b) XRD pattern of (1:4)TiO2...
Figure 3: HRTEM images of (a) TiO2, (b) GQDs, (c) (1:4)TiO2/GQDs, and (d) of (1:4)TiO2/GQDs with high magnifi...
Figure 4: EDX mapping of (1:4)TiO2/GQDs.
Figure 5: (a) CV curves at different electrodes in a solution (0.05 M BR buffer, pH 4) containing CURI = CHYP...
Figure 6: (a) CV curves of URI and HYP at equal concentrations of 25 µM in 0.05 M BR pH 2–6 at the (1:4)TiO2/...
Figure 7: (a) CV curves of (1:4)TiO2/GQDs-GCE in 0.05 M BR buffer (pH 3) with CURI = CHYP = 25 µM; scanning r...
Scheme 1: Proposed oxidation mechanisms of URI and HYP at the (1:4)TiO2/GQDs-GCE.
Figure 8: DPV curves at the (1:4)TiO2/GQDs-GCE. (a) 0.05 M BR pH 3 with CURI = CHYP = 1.00–15.26 µM. (b) Line...
Figure 9: The RSD of ten replicate measurements of (a) URI and (b) HYP at the (1:4)TiO2/GQDs-GCE in 0.05 M BR...
Figure 10: Effect of possible interferents. (a) Inorganic compounds and (b) organic compounds.