Pd(0.5)Nb2O5(0.5)/C nanocomposite with UV light assistance reduces ethanol oxidation onset by 160 mV, increases CO tolerance by 5x, and raises current density to 2.10 mA cm-2 from 1.07 mA cm-2 in alkaline media.
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PdFe3O4/C achieves 1426 mA mg^{-1} Pd mass activity and 31 mW cm^{-2} power density in ADEFC tests while cutting Pd content by roughly 45% compared with commercial catalyst.
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Photo-Assisted Pd-Nb2O5/Carbon Nanocomposites for Enhanced Ethanol Electro-Oxidation Kinetics and CO Tolerance in Alkaline Media
Pd(0.5)Nb2O5(0.5)/C nanocomposite with UV light assistance reduces ethanol oxidation onset by 160 mV, increases CO tolerance by 5x, and raises current density to 2.10 mA cm-2 from 1.07 mA cm-2 in alkaline media.
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Fe3O4 nano-octahedra and SnO2 nanorods modifying low-Pd amount electrocatalysts for alkaline direct ethanol fuel cells
PdFe3O4/C achieves 1426 mA mg^{-1} Pd mass activity and 31 mW cm^{-2} power density in ADEFC tests while cutting Pd content by roughly 45% compared with commercial catalyst.