Literature DB >> 22800174

One-pot synthesis of intermetallic electrocatalysts in ordered, large-pore mesoporous carbon/silica toward formic acid oxidation.

Jongmin Shim1, Jaehyuk Lee, Youngjin Ye, Jongkook Hwang, Soo-Kil Kim, Tae-Hoon Lim, Ulrich Wiesner, Jinwoo Lee.   

Abstract

This study describes the one-pot synthesis and single-cell characterization of ordered, large-pore (>30 nm) mesoporous carbon/silica (OMCS) composites with well-dispersed intermetallic PtPb nanoparticles on pore wall surfaces as anode catalysts for direct formic acid fuel cells (DFAFCs). Lab-synthesized amphiphilic diblock copolymers coassemble hydrophobic metal precursors as well as hydrophilic carbon and silica precursors. The final materials have a two-dimensional hexagonal-type structure. Uniform and large pores, in which intermetallic PtPb nanocrystals are significantly smaller than the pore size and highly dispersed, enable pore backfilling with ionomers and formation of the desired triple-phase boundary in single cells. The materials show more than 10 times higher mass activity and significantly lower onset potential for formic acid oxidation as compared with commercial Pt/C, as well as high stability due to better resistivity toward CO poisoning. In single cells, the maximum power density was higher than that of commercial Pt/C, and the stability highly improved, compared with commercial Pd/C. The results suggest that PtPb-based catalysts on large-pore OMCSs may be practically applied as real fuel cell catalysts for DFAFC.

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Year:  2012        PMID: 22800174     DOI: 10.1021/nn301692y

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  3 in total

1.  Pt/Ni(OH)2-NiOOH/Pd multi-walled hollow nanorod arrays as superior electrocatalysts for formic acid electrooxidation.

Authors:  Han Xu; Liang-Xin Ding; Jin-Xian Feng; Gao-Ren Li
Journal:  Chem Sci       Date:  2015-08-28       Impact factor: 9.825

2.  A General Concurrent Template Strategy for Ordered Mesoporous Intermetallic Nanoparticles with Controllable Catalytic Performance.

Authors:  Hao Lv; Huaiyu Qin; Katsuhiko Ariga; Yusuke Yamauchi; Ben Liu
Journal:  Angew Chem Int Ed Engl       Date:  2022-03-03       Impact factor: 16.823

3.  Pt3Sn nanoparticles enriched with SnO2/Pt3Sn interfaces for highly efficient alcohol electrooxidation.

Authors:  Zichen Wang; Liang Wang; Wangbin Zhu; Tang Zeng; Wei Wu; Zhao Lei; Yangyang Tan; Haifeng Lv; Niancai Cheng
Journal:  Nanoscale Adv       Date:  2021-07-03
  3 in total

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