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On the γ-alumina support, as the first step, Sn was impregnated using an acidic solution of SnCl2 and wet impregnation technique in rotary instrument at 40 °C, followed by drying at 120 °C for 12 h and calcination at 530 °C for 2 h in wet air under controlled temperature increments of 5 °C/min rate.
In the impregnation technique, silica particles were added, then removed by dissolution in alkaline medium.
The HAp scaffold was coated with a poly(ε-caprolactone) (PCL) using vacuum impregnation technique.
Porous Ta Nb alloys were fabricated using the sponge impregnation technique and the powder metallurgy technique (P/M) in combination.
The composites with modified and unmodified GrF were developed using a solution impregnation technique followed by compression molding.
This solution was added onto steel sheets using spray impregnation technique.
Wet impregnation technique was used, where the metal content maintained around 4 wt.%.
Boron-promoted potassium-ferrierite catalysts were prepared following the wet impregnation technique.
"Modified" carbon electrodes were prepared from crude carbon samples by impregnation technique.
The impregnation technique involves depositing nanoparticle catalysts into a pre-sintered electrode backbone.
A vacuum impregnation technique was used to investigate the fracture process.
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