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Catalysts with different Fe and Cr loadings were prepared using the impregnation method.
However, the catalysts prepared by sol-immobilisation are considerably more active than those prepared using the impregnation method [16, 17, 18, 19, 20].
Various different Ag catalyst supports were prepared (LaPO4, Carbon nanotubes CNT, TiO2, Al2O3 and SiO2) using the impregnation method, and subsequently tested.
The TEM images in Fig. 11 shown the nanotubular structure of Pt-Ru/TNT/C and Pt/TNT/C, on which the catalysts were successfully deposited using the impregnation method.
In our previous studies using catalysts prepared using the impregnation method [16, 17, 18, 19, 20] we used an Au Pd mol ratio of 1 1.85, which is very close to this optimum ratio.
In an earlier study [19] we observed that in the catalysts prepared using the impregnation method, the very smallest particles were mainly Pd and that 3 5 nm Au Pd nanoparticles comprised typically 98 % Pd to 2 % Au.
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One-half of the samples were prepared by the standard solvent casting method and the second half using the innovative impregnation method.
The support was applied in different heterogeneous base catalyst preparation using the wet impregnation method.
CuO supported on alumina, titania, and zirconia were prepared using the wet impregnation method.
All the monometallic and bimetallic nanocatalysts were prepared using the wet impregnation method with 5wt% metal loading.
The deposition of Pd nanoparticles was achieved using the wet impregnation method on calcined supports.
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