Exact(40)
The 95%% ethanol extract had the highest reducing activity, followed by the water extract (Fig. 3a).
Moreover, ethyl acetate fraction has shown the highest reducing power followed by aqueous fraction, n-hexane fraction and crude extract.
The morphology of S-11 sample, which exhibited very good light fastness and highest reducing strength, observed through SEM and TEM are shown in Fig. 6a, b.
The highest reducing power was found with ethanol solvent extract (absorbance 1.99) followed by water (absorption 1.87) and methanol (absorption 1.57).
The EtOAc fraction had highest reducing antioxidant power with 1.6 ± 0.01 FRAP value, and followed by petroleum ether, n-BuOH and water fraction.
Among the four fractions, the highest reducing activity was observed in the EtOAc fraction and the lowest in the water fraction (Fig. 3b).
Similar(19)
A higher reducing agent concentration stabilizes the particles.
The absorbance at 700 nm was measured, with higher absorbance indicating a higher reducing power.
High reducing ability and photosensitivity of oxalate di anions are responsible for the rapid decomposition [22].
Electrons and holes exhibit high reducing and oxidizing ability, respectively [18].
It is expected that plants with higher reducing capacity are more potent in reducing metallic ions to metallic nanoparticles [14].
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