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- W2797383927 abstract "In this paper, platinum nanoparticles were deposited on a carbon carrier with the partly graphitized carbon and the highly dispersive carbon-coated nickel particles. An efficient electron transfer structure can be fabricated by controlling the contents of the deposited platinum. The high resolution transmission electron microscopy images of Pt2/[email protected]N-doped sample prove the electron transfer channel from Pt (1 1 1) crystal planes to graphite (1 0 0) or Ni (1 1 1) crystal planes due to these linked together crystal planes. The Pt3/[email protected]N-doped with low Pt contents cannot form the electron transfer structure and the Pt1/[email protected]N-doped with high Pt contents show an obvious aggregation of Pt nanoparticles. The electrochemical tests of all the catalysts show that the Pt2/[email protected]N-doped sample presents the highest catalytic activity, the strongest CO tolerance and the best catalytic stability. The high performance is attributed to the efficient electronic transport structure of the Pt2/[email protected]N-doped sample and the synergistic effect between Pt and Ni nanoparticles. This paper provides a promising method for enhancing the conductivity of electrode material." @default.
- W2797383927 created "2018-04-24" @default.
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- W2797383927 date "2018-08-01" @default.
- W2797383927 modified "2023-09-27" @default.
- W2797383927 title "Controllable fabrication of Pt nanocatalyst supported on N-doped carbon containing nickel nanoparticles for ethanol oxidation" @default.
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- W2797383927 doi "https://doi.org/10.1016/j.jcis.2018.03.099" @default.
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