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Carbon supported Cu-Ag (Cu-Ag/C) bimetallic nanoparticles prepared by the impregnation reduction method in aqueous solution are evaluated as anode catalysts for sodium borohydride (NaBH4) oxidation.
The Pd/MOF catalysts were prepared by impregnation reduction.
Herein, the Pd/MOF catalysts were prepared by impregnation reduction.
The Pd/MOF composite photocatalysts were prepared by impregnation reduction [42, 50].
A nanosize Zr metal organic framework (Zr-MOF, UiO-66) wasolvothermallyly synthesized, and the Pd/MOF catalysts were prepared by impregnation reduction as well.
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In this work, magnetic nanoparticles (MNPs) Fe3O4/CeO2 were firstly synthesized using three different preparation methods, including coprecipitation, impregnation oxidation-precipitation and impregnation reduction-precipitation, respectively.
Pt-Mo/SiO2 catalysts were prepared using impregnation-reduction methods.
Comparative studies on the performance of MEAs were also conducted utilizing impregnation-reduction and conventional brush coating methods.
These hybrid materials were synthetized by impregnation-reduction-decoration (IRD) methodology.
In this study, a series of PtSnK/Al2O3 catalysts were prepared by an impregnation-reduction method and employed as a catalyst in an isobutane dehydrogenation reaction.
In this work, nanoscale tungsten carbide hybrid materials (WC/C) was synthesized by intermittent microwave heating method (IMH), and then the alloyed Pt9Rh-WC/C catalysts were prepared by impregnation-reduction method followed by subsequent thermal annealing under N2 atmosphere.
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