2008
DOI: 10.1016/j.jpowsour.2007.11.024
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Improved performance of Pd electrocatalyst supported on ultrahigh surface area hollow carbon spheres for direct alcohol fuel cells

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Cited by 113 publications
(48 citation statements)
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“…For the cathodic peaks starting at −0.4 V, some authors assigned the cathodic peaks to the removal of carbonaceous species that are not completely oxidized in the anodic scan. 71,72 However, the intermediates generated in the forward scan probably diffuse into the bulk electrolyte and are fully oxidized at high potentials. In addition, the sharp increase also indicates that the peak is probably due to the oxidation of fresh ethanol immediately after the reduction of PdO.…”
Section: Resultsmentioning
confidence: 99%
“…For the cathodic peaks starting at −0.4 V, some authors assigned the cathodic peaks to the removal of carbonaceous species that are not completely oxidized in the anodic scan. 71,72 However, the intermediates generated in the forward scan probably diffuse into the bulk electrolyte and are fully oxidized at high potentials. In addition, the sharp increase also indicates that the peak is probably due to the oxidation of fresh ethanol immediately after the reduction of PdO.…”
Section: Resultsmentioning
confidence: 99%
“…[8][9][10] Alternatively, surfactant-stabilized colloidal Pd can be independently prepared and later mixed with a carbon black. [11] A large variety of conductive materials have been used to support Pd nanoparticles, including carbon blacks like Vulcan XC-72, alone [8] or in combination with either nanocrystalline metal oxides (NiO, CeO 2 , Co 3 O 4 , Mn 3 O 4 ) [12,13] or tungsten carbide nanocrystals, [14] carbon microspheres, [15] coinlike hollow carbons, [16] ultrahigh-surface hollow carbon spheres, [17] carbonized porous anodic alumina, [18] carbonized TiO 2 nanotubes, [19] multiwalled carbon nanotubes [20] and activated carbon nanofibers. [20] Electrochemical methods for the preparation of anode electrocatalysts for DAFCs involve the electrodeposition of one metal at a time, eventually followed by the electrodeposition of other metals.…”
Section: A C H T U N G T R E N N U N G Potentials Of Pt-based Anodes Inmentioning
confidence: 99%
“…Furthermore, their unclosed graphitic flakes give rise to dangling bonds throughout the surface of the spheres, increasing their reactivity and boosting their applicability in adsorption, lubricants, tribological coatings, catalysis, batteries, supercapacitors or fuel cells among others. [10][11][12][13][14][15] Conversely, when it comes to their transport and magnetic properties, the list of examples is very scarce, 16,17 despite their potential for use as electronically active reinforcing agents of functional composites. 18,19 Indeed, the recent discovery of organic magnetoresistance (OMAR) in graphene and other related nanocarbons has significantly attracted increasing attention to these systems, as they are promising materials for flexible, low-cost and transparent electronics.…”
Section: Introductionmentioning
confidence: 99%