4.8 Article

Size-Controlled Synthesis of Platinum-Copper Hierarchical Trigonal Bipyramid Nanoframes

Journal

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
Volume 54, Issue 1, Pages 108-113

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.201408399

Keywords

alloys; formic acid; nanoframes; oxidation; size control

Funding

  1. MOST of China [2014CB932700, 2011CB921403]
  2. NSFC [21203173, 51371164, J1030412]
  3. CAS [XDB01020000]
  4. Fundamental Research Funds for the Central Universities [WK2340000050, WK2060190025]

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Mastery over the structure of materials at nanoscale can effectively tailor and control their catalytic properties, enabling enhancement in both activity and durability. We report a size-controlled synthesis of novel Pt-Cu hierarchical trigonal bipyramid nanoframes (HTBNFs). The obtained nanocrystals looked like a trigonal bipyramid on the whole, composed of similar ordered frame structural units. By varying the amount of KI involved in the reaction, HTBNFs with variable sizes from 110 to 250nm could be obtained. In addition, the structure of HTBNFs could be preserved only in a limited range of the Pt/Cu feeding ratio. Relative to the commercial Pt/C, these Pt-Cu HTBNFs with different Pt/Cu ratio exhibited enhanced electrocatalytic activity toward formic acid oxidation reaction as much as 5.5 times in specific activity and 2.1 times in mass activity. The excellent electrocatalytic activity and better durability are due to the unique structure of HTBNFs and probably synergetic effects between Pt and Cu.

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