Electrochemical Activity of Metal-Ion Exchanger Nanocomposites

被引:2
|
作者
Kravchenko, T. A. [1 ]
Vakhnin, D. D. [1 ]
Pridorogina, V. E. [1 ]
Shafrova, M. F. [1 ]
机构
[1] Voronezh State Univ, Fac Chem, Voronezh 394018, Russia
基金
俄罗斯基础研究基金会;
关键词
metal nanoparticles; ion-exchange matrix; nanocomposite; oxygen; reduction; electrochemical activity; OXYGEN REDUCTION; ELECTROREDUCTION; NANOPARTICLES; MEMBRANE; CATALYSTS; ELECTRODE; CARBON; COPPER; ORR; AG;
D O I
10.1134/S1023193519120097
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
The electroreduction of oxygen on thin-film metal-polymer nanocomposites that differ in the metal (Ag, Cu, Pd), content, particle size of the metal component, and ionic form of the Lewatit K2620 matrix (H+, Na+) was studied. The limiting oxygen diffusion current and effective number of electrons involved in oxygen electroreduction were determined. The limiting current and the number of electrons increased with the content of metal nanoparticles and transition to larger nanoparticles. The oxygen electroreduction occurs by the four-electron mechanism, whereby the hydrogen peroxide intermediate product does not accumulate, and oxygen is reduced directly to water molecules. The electrochemical reduction of the metal oxidation products and hydrogen evolution can be observed depending on the ionic form of the matrix.
引用
收藏
页码:1251 / 1257
页数:7
相关论文
共 50 条
  • [1] Electrochemical Activity of Metal-Ion Exchanger Nanocomposites
    T. A. Kravchenko
    D. D. Vakhnin
    V. E. Pridorogina
    M. F. Shafrova
    Russian Journal of Electrochemistry, 2019, 55 : 1251 - 1257
  • [2] Recrystallization in metal-ion exchanger nanocomposites
    Zolotukhina, E. V.
    Kravchenko, T. A.
    Peshkov, S. V.
    Vdovina, S. N.
    RUSSIAN JOURNAL OF PHYSICAL CHEMISTRY A, 2010, 84 (07) : 1215 - 1219
  • [3] Recrystallization in metal-ion exchanger nanocomposites
    E. V. Zolotukhina
    T. A. Kravchenko
    S. V. Peshkov
    S. N. Vdovina
    Russian Journal of Physical Chemistry A, 2010, 84 : 1215 - 1219
  • [4] A macrokinetic model of redox sorption on metal-ion exchanger nanocomposites at electrochemical polarization
    Polyanskii, L. N.
    Korzhov, E. N.
    Vakhnin, D. D.
    Kravchenko, T. A.
    RUSSIAN JOURNAL OF PHYSICAL CHEMISTRY A, 2016, 90 (08) : 1675 - 1681
  • [5] Ion exchange and redox reactions in metal-ion exchanger nanocomposites
    Kipriyanova, E. S.
    Konev, D. V.
    Kravchenko, T. A.
    Khorol'skaya, S. V.
    RUSSIAN JOURNAL OF PHYSICAL CHEMISTRY A, 2012, 86 (07) : 1128 - 1133
  • [6] Ion exchange and redox reactions in metal-ion exchanger nanocomposites
    E. S. Kipriyanova
    D. V. Konev
    T. A. Kravchenko
    S. V. Khorol’skaya
    Russian Journal of Physical Chemistry A, 2012, 86 : 1128 - 1133
  • [7] Electroreduction of Molecular Oxygen on Metal-Ion Exchanger Nanocomposites
    Chaika, M. Yu.
    Novikova, V. V.
    Polyanskii, L. N.
    Kravchenko, T. A.
    PETROLEUM CHEMISTRY, 2011, 51 (07) : 519 - 526
  • [8] Electroreduction of molecular oxygen on metal-ion exchanger nanocomposites
    M. Yu. Chaika
    V. V. Novikova
    L. N. Polyanskii
    T. A. Kravchenko
    Petroleum Chemistry, 2011, 51 : 519 - 526
  • [9] Sorption of Molecular Oxygen by Metal-Ion Exchanger Nanocomposites
    Krysanov, V. A.
    Plotnikova, N. V.
    Kravchenko, T. A.
    RUSSIAN JOURNAL OF PHYSICAL CHEMISTRY A, 2018, 92 (03) : 527 - 531
  • [10] Percolation effect in dynamics of oxygen redox sorption with metal-ion exchanger nanocomposites
    Khorol’skaya S.V.
    Polyanskii L.N.
    Kravchenko T.A.
    Konev D.V.
    Krysanov V.A.
    Nanotechnologies in Russia, 2015, 10 (9-10): : 757 - 762