1 |
Ammonia electrooxidation on dendritic Pt nanostructures in alkaline solutions investigated by in-situ FTIR spectroscopy and online electrochemical mass spectroscopy Ye JY, Lin JL, Zhou ZY, Hong YH, Sheng T, Rauf M, Sun SG Journal of Electroanalytical Chemistry, 819, 495, 2018 |
2 |
Mathematical modeling of ammonia electrooxidation kinetics in a Polycrystalline Pt rotating disk electrode Diaz LA, Botte GG Electrochimica Acta, 179, 519, 2015 |
3 |
Electrochemical behavior of ammonia on Ni98Pd2 nano-structured catalyst Allagui A, Sarfraz S, Ntais S, Al Momani F, Baranova EA International Journal of Hydrogen Energy, 39(1), 41, 2014 |
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NiXPd1-x (x=0.98, 0.93, and 0.58) nanostructured catalysts for ammonia electrooxidation in alkaline media Allagui A, Sarfraz S, Baranova EA Electrochimica Acta, 110, 253, 2013 |
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Revealing the mechanism of indirect ammonia electrooxidation Gendel Y, Lahav O Electrochimica Acta, 63, 209, 2012 |
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Effects of carbonate on the electrolytic removal of ammonia and urea from urine with thermally prepared IrO2 electrodes Amstutz V, Katsaounis A, Kapalka A, Comninellis C, Udert KM Journal of Applied Electrochemistry, 42(9), 787, 2012 |
7 |
Screening of electrocatalysts for direct ammonia fuel cell: Ammonia oxidation on PtMe (Me : Ir, Rh, Pd, Ru) and preferentially oriented Pt(100) nanoparticles Vidal-Iglesias FJ, Solla-Gullon J, Montiel V, Feliu JM, Aldaz A Journal of Power Sources, 171(2), 448, 2007 |