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Amorphous Ru1−yCryO2/TiO2 nanotube composites were synthesized by loading different amount of Ru1−yCryO2 on TiO2 nanotubes via a reduction reaction of K2Cr2O7 with RuCl3·nH2O at pH 8, followed by drying in air at 150 °C.
The effect of photocatalysts dosage was also studied by loading different amount of photocatalyst (0.010, 0.015, 0.020 and 0.025 g) during photocatalytic reaction, where dye concentration (15 ppm) and irradiation time (15 min) remains constant.
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A series of Ba Cu Ce catalysts were prepared by loading different amounts of Ba Ac 2 on the sol gel-synthesized CuOx–CeO2 mixed oxidesol gel-synthesized
The organoclays (OC) were prepared by loading different amounts of the biocompatible nonionic polyoxyethylene sorbitan monolaurate surfactant (Tween20) onto K10 montmorillonite (Mt) clay and characterized through the construction of the adsorption isotherms by means of the spectrophotometric method.
To account for the different proliferation rates under each culture condition, cytokine measurements were normalized to total protein, as quantified via Pierce BCA and phospho-protein measurements were normalized by loading an equal amount of total protein into each assay well and normalized cell lysate loaded into the multiplexed assay to total protein.
Standard curves were obtained by loading increasing amounts of samples on gels as previously described [50].
However, a difference between the composite nanoparticles loaded with different amounts of chitosan was visually detected.
Commercial horse spleen ferritin (Sigma Chem. Co). was depleted of iron by treatment with thioglycolic acid [ 44] and loaded with different amounts of iron as described [ 45].
b H2 production rate of g-C3N4/PtNi/GO samples loaded with different amounts of PtNi alloy cocatalyst.
Finally, drug polymer interactions are studied by loading the polymers with different amounts of brilliant blue (hydrophilic) and p-nitroaniline (hydrophobic).
A series of monometallic and bimetallic bifunctional catalysts was formed by loading 350HOA USY with different amounts of platinum, nickel and platinum nickel by competitive ion exchange.
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