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Platinum–Cobalt Bimetallic Nanoparticles with Pt Skin for Electro-Oxidation of Ethanol

Journal Article


Abstract


  • In order to maximize the Pt utilization in catalysts and improve catalytic processes, we report a convenient strategy for preparation of Pt3Co with Pt-skin structured bimetallic nanocatalysts directly supported on porous graphitic carbon. Notably, the thickness of the Pt-skin is only 1-2 atomic layers, about 0.5 nm. Surprisingly, the bimetallic nanocatalysts composed of Pt3Co with Pt-skin are first used as ethanol electro-catalysts, with the mass activity of 0.79 mA ¿gPt-1, which is a 250% enhancement compared with commercial Pt/C (0.32 mA ¿gPt-1). On the basis of the results of electrochemical in situ Fourier transform infrared spectroscopy (FTIRS) and density functional theory (DFT), a new ethanol electro-oxidation enhancement mechanism is proposed in which Pt3Co with Pt-skin promotes partial oxidation of ethanol over C-C bond cleavage, thereby resulting in higher CH3COOH production than CO2 production.

Authors


  •   Zhang, Binwei (external author)
  •   Sheng, Tian (external author)
  •   Wang, Yunxiao
  •   Qu, Xi-Ming (external author)
  •   Zhang, Jun-Ming (external author)
  •   Zhang, Zong-Cheng (external author)
  •   Liao, Hong-Gang (external author)
  •   Zhu, Fu-Chun (external author)
  •   Dou, Shi Xue
  •   Jiang, Yan-Xia (external author)
  •   Sun, Shi-Gang (external author)

Publication Date


  • 2017

Citation


  • Zhang, B., Sheng, T., Wang, Y., Qu, X., Zhang, J., Zhang, Z., Liao, H., Zhu, F., Dou, S., Jiang, Y. & Sun, S. (2017). Platinum–Cobalt Bimetallic Nanoparticles with Pt Skin for Electro-Oxidation of Ethanol. ACS Catalysis, 7 (1), 892-895.

Scopus Eid


  • 2-s2.0-85019772094

Number Of Pages


  • 3

Start Page


  • 892

End Page


  • 895

Volume


  • 7

Issue


  • 1

Abstract


  • In order to maximize the Pt utilization in catalysts and improve catalytic processes, we report a convenient strategy for preparation of Pt3Co with Pt-skin structured bimetallic nanocatalysts directly supported on porous graphitic carbon. Notably, the thickness of the Pt-skin is only 1-2 atomic layers, about 0.5 nm. Surprisingly, the bimetallic nanocatalysts composed of Pt3Co with Pt-skin are first used as ethanol electro-catalysts, with the mass activity of 0.79 mA ¿gPt-1, which is a 250% enhancement compared with commercial Pt/C (0.32 mA ¿gPt-1). On the basis of the results of electrochemical in situ Fourier transform infrared spectroscopy (FTIRS) and density functional theory (DFT), a new ethanol electro-oxidation enhancement mechanism is proposed in which Pt3Co with Pt-skin promotes partial oxidation of ethanol over C-C bond cleavage, thereby resulting in higher CH3COOH production than CO2 production.

Authors


  •   Zhang, Binwei (external author)
  •   Sheng, Tian (external author)
  •   Wang, Yunxiao
  •   Qu, Xi-Ming (external author)
  •   Zhang, Jun-Ming (external author)
  •   Zhang, Zong-Cheng (external author)
  •   Liao, Hong-Gang (external author)
  •   Zhu, Fu-Chun (external author)
  •   Dou, Shi Xue
  •   Jiang, Yan-Xia (external author)
  •   Sun, Shi-Gang (external author)

Publication Date


  • 2017

Citation


  • Zhang, B., Sheng, T., Wang, Y., Qu, X., Zhang, J., Zhang, Z., Liao, H., Zhu, F., Dou, S., Jiang, Y. & Sun, S. (2017). Platinum–Cobalt Bimetallic Nanoparticles with Pt Skin for Electro-Oxidation of Ethanol. ACS Catalysis, 7 (1), 892-895.

Scopus Eid


  • 2-s2.0-85019772094

Number Of Pages


  • 3

Start Page


  • 892

End Page


  • 895

Volume


  • 7

Issue


  • 1