Exact(1)
For example, Hao et al. [11] reported that boron-doped graphene was used as a high surface support for PANI deposition.
Similar(59)
Supported gold nanoparticles (NP) are active for the oxidation of alcohols under green chemistry conditions, and high surface supports are used to maximize and stabilize their dispersion.
In this work, high-surface supported PtRu/C were prepared with Ru(NO)(NO3 3 and [Pt(H2NCH2CH2NH2 2]Cl2 as the precursors and hydrogen as a reducing agent.
In general, when an oxide is supported on a high surface area support, Tmax decreases considerably due to the interaction with the support.
Hybridization of H2S active CuO at nanoscale with high surface area support like graphene can further enhance the overall adsorption capacity of H2S.
In this context, the addition of a second metal oxide on a catalyst composed of a well dispersed Pt phase over a high surface area support may be a powerful strategy.
The results suggest that solution and reprecipitation of Pt crystallites is the main predominant growth mechanism and that the use of suitable high surface energy support may help to reduce the rate of growth of Pt crystallites under such conditions.
A layered crystalline titanate labelled as type 2 titanate [Anthony et al., US Patent 5 1993045 (1993)] is pillared with tetraethyl orthosilicate to prepare a porous and high surface area support for a sulfided MoNi catalyst.
Non-noble metal catalysts for oxygen evolution were prepared by dispersing iron (II) phthalocyanine (FePc) and nickel (II) phthalocyanine (NiPc) on multi-walled carbon nanotubes (MWCNTs) which were used as high surface area support.
For the silica supported cobalt catalyst without adding urea, after drying before the calcination, XRD measurement showed that the cobalt is partly dehydrated to cobalt nitrate, the cobalt nitrate hydrate re-crystallizes when the water is vaporized even when it is dispersed in the high surface area support.
The use of pillars of silica or silica-zirconia inserted in the interlayer space of a natural clay provides a high surface area support that can favor the dispersion of both CuO and CeO2 active phases, leading to the formation of a high amount of copper-ceria interfacial sites, responsible for a very high catalytic activity in the CO-PROX reaction.
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