Borohydride oxidation reaction mechanisms and poisoning effects on Au, Pt and Pd bulk electrodes: From model (low) to direct borohydride fuel cell operating (high) concentrations

被引:85
作者
Braesch, Guillaume [1 ,2 ,3 ]
Bonnefont, Antoine [4 ]
Martin, Vincent [1 ,2 ]
Savinova, Elena R. [3 ]
Chatenet, Marian [1 ,2 ,5 ]
机构
[1] Univ Grenoble Alpes, CNRS, Grenoble INP, LEPMI, F-38000 Grenoble, France
[2] Univ Savoie Mt Blanc, LEPMI, F-73000 Chambery, France
[3] Univ Strasbourg, ECPM, UMR CNRS 7515, Inst Chim & Proc Energie Environm & Sante, 25 Rue Becquerel, F-67087 Strasbourg, France
[4] Univ Strasbourg, CNRS, UMR 7177, Inst Chim, 4 Rue Blaise Pascal, F-67000 Strasbourg, France
[5] IUF, Paris, France
关键词
Borohydride oxidation reaction (BOR); Differential electrochemical mass spectrometry (DEMS); Rotating ring-disk electrode (RRDE); Gold; Platinum; Palladium; SODIUM-BOROHYDRIDE; HYDROGEN STORAGE; ELECTROCHEMICAL OXIDATION; ELECTROOXIDATION REACTION; MASS-SPECTROMETRY; NANOPARTICLE SIZE; OXYGEN REDUCTION; REDUCING AGENT; PALLADIUM; PLATINUM;
D O I
10.1016/j.electacta.2018.04.068
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
The borohydride oxidation reaction (BOR) was characterized on the three most-studied noble metals (Au, Pt and Pd) in a range of NaBH4 concentration and temperature that enables to bridge model studies of the BOR (low concentration) to more practical ones, relevant to the direct borohydride fuel cell (DBFC) operation. BOR mechanistic insights were unveiled using the complementary techniques of rotating disk electrode cyclic voltamperometry, rotating ring-disk electrode measurements of the BH3OH- production and differential electrochemical mass spectrometry detection of H-2 escape. When the concentration of sodium borohydride is brought to DBFC-like operating conditions, the H-2 escape is more severe and the poisoning effect of the metal surfaces by the BOR intermediates (BHads or BH3,(ads)) is more significant, and stronger on Pt surfaces compared to Au and Pd ones. Even at high NaBH4 concentrations, Pd exhibits promising BOR kinetics, making of this material an interesting candidate for DBFC anode electrocatalysis. These data enabled to complement our previous kinetic model and to confirm the BH3 species oxidation pathways for NaBH4 concentrations of 5 mM and 50 mM. However, this model is incomplete for high borohydride concentrations; it does not take into account possible local pH variations and cannot explain the origin of the important reduction currents measured at high potential on the Au ring electrodes. Finally, it is shown that the BOR mechanism at Pd electrodes must take into account PdH formation and oxidation. (c) 2018 Elsevier Ltd. All rights reserved.
引用
收藏
页码:483 / 494
页数:12
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