4.6 Article

A facile one-pot self-assembly approach to incorporate SnOx nanoparticles in ordered mesoporous carbon with soft templating for fuel cells

Journal

NANOTECHNOLOGY
Volume 25, Issue 13, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/0957-4484/25/13/135403

Keywords

one-pot; soft template; SnOx/OMC; electrocatalyst; fuel cell

Funding

  1. Natural Science Foundation of China [21105030]
  2. State Key Laboratory of Chem/Biosensing Chemometrics [2012013]
  3. Shenzhen Water Development Special Fund [2012-3-84]
  4. Student Innovative Project of Guangdong Province [1056412061]
  5. South China Agricultural University [2009B010100001]

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Unique SnOx (x = 1, 2)/ordered mesoporous carbon nanocomposites (denoted as SnOx/OMC) are firstly synthesized through a 'one-pot' synthesis together with the soft template self-assembly approach. The obtained SnOx/OMC nanocomposites with various SnOx contents exhibit uniform pore sizes between 3.9 and 4.2 nm, high specific surface areas between 497 and 595 m(2) g(-1), and high pore volumes between 0.39 and 0.48 cm(3) g(-1). With loading of Pt, Pt-SnOx/OMC with relatively low SnOx content exhibits superior electrocatalytic performance, long-term durability, and resistance to CO poisoning for methanol oxidation, as compared to Pt/OMC, PtRu/C and Pt-SnOx/C, which may be attributed not only to the synergetic effect of embedded SnOx, but also to the highly ordered mesostructure with high specific surface areas and large pore volumes affording plenty of surface area for support of Pt nanoparticles. This work supplies an efficient way to synthesize novel ordered mesoporous carbon self-supported metallic oxide as catalyst support and its further potential application to reduce the cost of catalysts in direct methanol fuel cells.

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