Carbon-Encapsulated WO x Hybrids as Efficient Catalysts for Hydrogen Evolution

Developing non-noble metal catalysts as Pt substitutes, with good activity and stability, remains a great challenge for cost-effective electrochemical evolution of hydrogen. Herein, carbon-encapsulated WO anchored on a carbon support (WO @C/C) that has remarkable Pt-like catalytic behavior for the h...

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Veröffentlicht in:Advanced materials (Weinheim) 2018-07, Vol.30 (28), p.e1705979
Hauptverfasser: Jing, Shengyu, Lu, Jiajia, Yu, Guangtao, Yin, Shibin, Luo, Lin, Zhang, Zengsong, Ma, Yanfeng, Chen, Wei, Shen, Pei Kang
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Sprache:eng
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Zusammenfassung:Developing non-noble metal catalysts as Pt substitutes, with good activity and stability, remains a great challenge for cost-effective electrochemical evolution of hydrogen. Herein, carbon-encapsulated WO anchored on a carbon support (WO @C/C) that has remarkable Pt-like catalytic behavior for the hydrogen evolution reaction (HER) is reported. Theoretical calculations reveal that carbon encapsulation improves the conductivity, acting as an electron acceptor/donor, and also modifies the Gibbs free energy of H* values for different adsorption sites (carbon atoms over the W atom, O atom, WO bond, and hollow sites). Experimental results confirm that WO @C/C obtained at 900 °C with 40 wt% metal loading has excellent HER activity regarding its Tafel slope and overpotential at 10 and 60 mA cm , and also has outstanding stability at -50 mV for 18 h. Overall, the results and facile synthesis method offer an exciting avenue for the design of cost-effective catalysts for scalable hydrogen generation.
ISSN:0935-9648
1521-4095
DOI:10.1002/adma.201705979