Ball milling: a green mechanochemical approach for synthesis of nitrogen doped carbon nanoparticles

Technological and scientific challenges coupled with environmental considerations have attracted a search for robust, green and energy-efficient synthesis and processing routes for advanced functional nanomaterials. In this article, we demonstrate a high-energy ball milling technique for large-scale...

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Veröffentlicht in:Nanoscale 2013-09, Vol.5 (17), p.7970-7976
Hauptverfasser: Xing, Tan, Sunarso, Jaka, Yang, Wenrong, Yin, Yongbai, Glushenkov, Alexey M, Li, Lu Hua, Howlett, Patrick C, Chen, Ying
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Sprache:eng
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Zusammenfassung:Technological and scientific challenges coupled with environmental considerations have attracted a search for robust, green and energy-efficient synthesis and processing routes for advanced functional nanomaterials. In this article, we demonstrate a high-energy ball milling technique for large-scale synthesis of nitrogen doped carbon nanoparticles, which can be used as an electro-catalyst for oxygen reduction reactions after a structural refinement with controlled thermal annealing. The resulting carbon nanoparticles exhibited competitive catalytic activity (5.2 mA cm(-2) kinetic-limiting current density compared with 7.6 mA cm(-2) on Pt/C reference) and excellent methanol tolerance compared to a commercial Pt/C catalyst. The proposed synthesis route by ball milling and annealing is an effective process for carbon nanoparticle production and efficient nitrogen doping, providing a large-scale production method for the development of highly efficient and practical electrocatalysts.
ISSN:2040-3364
2040-3372
DOI:10.1039/c3nr02328a