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Carbon based catalysts for the oxidative dehydrogenation of ethylbenzene were prepared by a template assisted route.
Bi has been employed as a modifier for AuPt/AC alloy based catalysts for the base-free glycerol oxidation.
Cobalt and Iron based catalysts for the Oxygen Reduction Reaction (ORR) are a promising alternative to the use of Pt in Polymer Electrolyte Fuel Cells (PEMFC).
The viewpoint proposed in this paper can guide the design and preparation of Pt based catalysts for the commercialization of direct methanol fuel cells.
The sol gel method was applied to the synthesis of Zr, Ti, Mo, W, and V modified NiO based catalysts for the ethane oxidative dehydrogenation reaction.
The catalytic properties of various supported and unsupported vanadium oxide based catalysts for the Selective Catalytic Reduction of NOx with NH3 (SCR) are investigated.
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This preliminary design considers two reactive zones, each one packed with a different catalyst, a Ni−Mo based catalyst for the bottom reactive section and a Co−Mo for the top reactive section.
The electrocatalytic results obtained for 20% (w/w) Pt/C (E-TEK Inc., USA) and α-MnO2/C for the ORR, considered as one of the most active manganese oxide based catalyst for the ORR in alkaline media, were included for comparison.
The activities of different silver based catalysts for HCHO oxidation were closely related to their abilities for the formation of DOM and formate species.
The possibility to apply metal organic framework (MOF) based catalysts for oxidation reaction in gas phase was explored.
It proves CeO2 a very promising co-catalyst of Pt based catalysts for DAFCs.
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