Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5351424 | Applied Surface Science | 2017 | 8 Pages |
Abstract
This paper reports the convenient synthesis of honeycomb-like mesoporous nitrogen-doped carbon spheres (MNCS) using a self-assembly strategy that employs dopamine (DA) as a carbon and nitrogen precursor and a polystyrene-b-poly(ethylene oxide) (PS173-b-PEO170) diblock copolymer as a soft template. The MNCS have large BET surface areas of up to 554Â m2Â gâ1 and high nitrogen contents of up to 6.9Â wt%. The obtained MNCS are used as a support for Pt catalysts, which promote methanol oxidation in alkaline media. The MNCS-supported Pt (Pt/MNCS) catalyst has a larger electrochemically active surface area (ESA) (89.2Â m2Â gâ1) than does a commercially available Vulcan XC-72R supported Pt/C catalyst. Compared to the Pt/C catalyst, Pt/MNCS displays a higher peak current density (1007Â mAÂ mgâ1) and is more stable during methanol oxidation. These improvements are attributed to the honeycomb-like porous structure of the MNCS and the introduction of nitrogen to the carbon support. The MNCS effectively stabilize Pt nanoparticles and assuage the agglomeration of the nanoparticles, suggesting that MNCS are potential and promising application as electrocatalyst supports in alkaline direct methanol fuel cells.
Related Topics
Physical Sciences and Engineering
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Physical and Theoretical Chemistry
Authors
Yunmao Zhang, Yong Liu, Weihua Liu, Xiying Li, Liqun Mao,