Suppression of Hydrogen Evolution by Oxygen Reduction in Nanoporous Electrocatalysts

被引:38
作者
Benn, Ellen E. [1 ]
Gaskey, Bernard [1 ]
Erlebacher, Jonah D. [1 ]
机构
[1] Johns Hopkins Univ, Dept Mat Sci & Engn, Baltimore, MD 21218 USA
关键词
PLATINUM-ELECTRODES; REACTIVITY; PEROXIDE; SURFACES; KINETICS; ALLOYS; WATER; GOLD;
D O I
10.1021/jacs.6b10855
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Electroreduction of small molecules in aqueous solution often competes with the hydrogen evolution reaction (HER), especially if the reaction is driven even moderately hard using a large overpotential. Here, the oxygen reduction reaction (ORR) was studied under proton diffusion-limited conditions in slightly acidic electrolytes: a model system to study the relative transport kinetics of protons and reactants to an electrocatalyst and the relationship between transport and catalytic performance. Using dealloyed nanoporous nickel platinum (np-NiPt) electrodes, we find the hydrogen evolution reaction can be completely suppressed even at high overpotentials (-400 mV vs RHE). In addition, the mechanism of oxygen reduction can be changed by using buffered versus unbuffered solutions, suggesting the reaction selectivity is associated with a transient rise (or lack thereof) in the interface pH at the np-NiPt surface. Independently controlling reactant transport to electrocatalyst surfaces at high overpotentials exhibited a surprisingly rich phenomenology that may offer a generalizable strategy to increase activity and selectivity during electroreduction reactions.
引用
收藏
页码:3663 / 3668
页数:6
相关论文
共 24 条
  • [1] Near-surface ion distribution and buffer effects during electrochemical reactions
    Auinger, Michael
    Katsounaros, Ioannis
    Meier, Josef C.
    Klemm, Sebastian O.
    Biedermann, P. Ulrich
    Topalov, Angel A.
    Rohwerder, Michael
    Mayrhofer, Karl J. J.
    [J]. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2011, 13 (36) : 16384 - 16394
  • [2] THE SOLUBILITY OF OXYGEN AND OZONE IN LIQUIDS
    BATTINO, R
    RETTICH, TR
    TOMINAGA, T
    [J]. JOURNAL OF PHYSICAL AND CHEMICAL REFERENCE DATA, 1983, 12 (02) : 163 - 178
  • [3] Characterization of Nanoporous Metal-Ionic Liquid Composites for the Electrochemical Oxygen Reduction Reaction
    Benn, E.
    Uvegi, H.
    Erlebacher, J.
    [J]. JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2015, 162 (10) : H759 - H766
  • [4] Highly Crystalline Multimetallic Nanoframes with Three-Dimensional Electrocatalytic Surfaces
    Chen, Chen
    Kang, Yijin
    Huo, Ziyang
    Zhu, Zhongwei
    Huang, Wenyu
    Xin, Huolin L.
    Snyder, Joshua D.
    Li, Dongguo
    Herron, Jeffrey A.
    Mavrikakis, Manos
    Chi, Miaofang
    More, Karren L.
    Li, Yadong
    Markovic, Nenad M.
    Somorjai, Gabor A.
    Yang, Peidong
    Stamenkovic, Vojislav R.
    [J]. SCIENCE, 2014, 343 (6177) : 1339 - 1343
  • [5] ELECTRODE KINETICS OF OXYGEN REDUCTION ON OXIDE-FREE PLATINUM ELECTRODES
    DAMJANOVIC, A
    BRUSIC, V
    [J]. ELECTROCHIMICA ACTA, 1967, 12 (06) : 615 - +
  • [6] How Does the Surface Structure of Pt-Ni Alloys Control Water and Hydrogen Peroxide Formation?
    de Morais, Rodrigo Ferreira
    Franco, Alejandro A.
    Sautet, Philippe
    Loffreda, David
    [J]. ACS CATALYSIS, 2016, 6 (09): : 5641 - 5650
  • [7] Evolution of nanoporosity in dealloying
    Erlebacher, J
    Aziz, MJ
    Karma, A
    Dimitrov, N
    Sieradzki, K
    [J]. NATURE, 2001, 410 (6827) : 450 - 453
  • [8] Fujita T, 2012, NAT MATER, V11, P775, DOI [10.1038/nmat3391, 10.1038/NMAT3391]
  • [9] Greeley J, 2009, NAT CHEM, V1, P552, DOI [10.1038/nchem.367, 10.1038/NCHEM.367]
  • [10] The effective surface pH during reactions at the solid-liquid interface
    Katsounaros, Ioannis
    Meier, Josef C.
    Klemm, Sebastian O.
    Topalov, Angel A.
    Biedermann, P. Ulrich
    Auinger, Michael
    Mayrhofer, Karl J. J.
    [J]. ELECTROCHEMISTRY COMMUNICATIONS, 2011, 13 (06) : 634 - 637