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The unique self-limiting feature of ALD allows conformal deposition of catalytic materials on a high surface area catalyst support at the atomic level.
The cathode catalyst layer in proton exchange membrane (PEM) fuel cells can contain nanometer-sized platinum particles dispersed on a high surface area carbon.
The best results in terms of synthesis homogeneity were obtained by supporting the bimetallic catalyst on a high surface area silica support by the "incipient wetness" method.
In this work we study heat-treated FeCu-phthalocyanine (FeCuPc) complexes as the catalyst for oxygen reduction in non-aqueous electrolyte Li/air cells by supporting the catalyst on a high surface area Ketjenblack EC-600JD carbon black.
Partial dehydrogenation of jet fuel requires the development of specific catalysts, amongst which Pt Sn supported on a high surface γ-Al2O3, shows good activity and selectivity, leading to production of high purity hydrogen.
Comparison of NH3 pulse reaction in a flow containing NO on H-Hol with those on a high surface area-manganese oxide and a commercial de-NOx catalyst shows that H-Hol has the greatest N2 production, but less selectivity to form N2. H-Hol has a comparable amount of the strong H+ sites with the high surface area manganese oxide, which have relationship with NH3 decomposition.
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For such a rounded pore entrance, the benefits of a high surface potential on both the front surface of the membrane and the pore wall have been quantified.
As to on-chip applications, a high surface density of TFTCs certainly increases the spatial resolution and accuracy in temperature measurement, but it also remarkably increases the number of pads and connections for the TFTC array, leading to complex interconnection.
E. coli hydrogenase 1 (Hyd-1) is adsorbed on a high surface-area carbon electrode and subjected to the same electrochemical control and efficient supply of substrate as in protein film electrochemistry during spectral acquisition.
A vertically aligned CNT (VA-CNT) forest grown on graphene provides a high surface area for Ge deposition.
The unique architecture of the ITO nanoparticles on graphene with a high surface area, enhanced electrical conductivity, and good optical properties in the visible range renders such hybrids suitable for optoelectronic and electrocatalytic applications.
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