Exact(5)
For obtaining the advantages of high surface active sites, the electrocatalysts should combine both the morphological and component advantages.
Engineering the nanocatalysts with high surface active areas has been regarded as one of the most efficient approach to obtain the high-performance electrocatalysts.
Owing to the attractive flower-like structure, such special PdAg NFs with a high surface active area of 43.25 m2 g− 1 possess much better electrocatalytic performances towards ethylene glycol oxidation with the mass and specific activity of 4383.5 mA mg− 1 and 10.12 mA cm− 2, 5.5 and 2.4 times higher than those of commercial Pd/C (JM 20% Pd), respectively.
In cobalt-catalyzed FTS, to achieve high surface active sites (Coo), cobalt precursors are dispersed on porous carriers such as SiO2, Al2O3 and to a lesser extent TiO2 [9, 10, 11, 12, 13, 14, 15, 16].
In cobalt-catalyzed Fischer-Tropsch synthesis, to achieve high surface active sites (Coo), cobalt precursors are dispersed on porous carriers such as SiO2, Al2O3, and to a lesser extent TiO2[9, 10, 11, 12, 13, 14, 15, 16].
Similar(55)
The extensive applications of nanomaterials as sensing materials are generally considered due to their small size, particular shape, high active surface-to-volume ratio, and high surface activity.
This is through the combination of the high surface area active carbon support with the alumina support through the water-milling-paste and calcination method.
Particularly, The TMD monolayers with the formula of MX2, which has a sandwiched structure with one M-atom (M = transition metal element) layer enclosed within two X layers (X = chalcogen element), and the atoms in layers are hexagonally packed, have attracted increasing attention because of their high surface area, active edges states, and high mechanic flexibility [15, 25, 30 40].
Nanomaterials have become attractive as adsorbents because they have a high surface area, enhanced active sites, and excellent sorption capacity.
Furthermore, the unique structure combines the advantageous features of high surface area, sufficient active sites, easy access to medium and rapid mass transport.
Two series of highly dispersed supported Pd Cu catalysts were prepared using different supports: highly acidic aluminum fluoride HS-AlF3, characterized by high surface area, and active carbon, both prepared by different preparation methods (fluorolytic sol gel method and co-impregnation).
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