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In this study, we followed up, by measuring the reductive desorption patterns, the time-dependent growth of the self-assembled monolayer (SAM) of a thiol compound (typically cysteine) formed on polycrystalline Au (poly-Au) electrode.
The temperature dependence was evaluated by measuring the reductive reaction at temperatures ranging from 25 to 45°C.
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every 10 days to measure the reductive dechlorination of PCE to trichloroethene (TCE) and dichloroethene (DCE).
Ferrozine formed a complex with ferrous ion, [Fe ferrozine 3]2+, which was quantified to measure the reductive release of ferritin iron.
As illustrated in figure 10, Fe3+ was transformed to Fe2+ in the presence of S. pinnata extract and the reference compound BHT to measure the reductive capability.
As illustrated in Fig. 3, Fe3+ was transformed to Fe2+ in the presence of MeOH and EtOH extracts of C. grevei to measure the reductive capability.
In reducing power assay, Fe3+ was transformed to Fe2+ in the presence of MeOH and EtOH extracts of C. grevei to measure the reductive capability.
As illustrated in Figure 9, Fe3+ to Fe2+ transformation in the presence of T. chebula, T. belerica and E. officinalis extracts and reference compound ascorbic acid was performed to measure the reductive capability.
The relative reactivity of ferrihydrite and goethite nanoparticles has been quantified by measuring the rates of reductive dissolution of nanoparticles by hydroquinone.
Because of possible interference of natural substances with another tetrazolium salt MTT, we first measured the direct reductive potential of all substances in a cell-free system.
Reaction of MitoC and ascorbic acid was followed by coupling their reductive recycling to an NADPH-linked reductase and measuring the absorbance at 340 nm.
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