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Synergistic Binary Fe-Co Nanocluster Supported on Defective Tungsten Oxide as Efficient Oxygen Reduction Electrocatalyst in Zinc-Air Battery.
Han, Qinglin; Zhao, Ximeng; Luo, Yuhong; Wu, Lanlan; Sun, Shujuan; Li, Jingde; Wang, Yanji; Liu, Guihua; Chen, Zhongwei.
Afiliación
  • Han Q; Hebei Provincial Key Laboratory of Green Chemical Technology and Highly Efficient Energy Saving, Tianjin Key Laboratory of Chemical Process Safety, National-Local Joint Engineering Laboratory for Energy Conservation of Chemical Process Integration and Resources Utilization, School of Chemical Engine
  • Zhao X; Hebei Provincial Key Laboratory of Green Chemical Technology and Highly Efficient Energy Saving, Tianjin Key Laboratory of Chemical Process Safety, National-Local Joint Engineering Laboratory for Energy Conservation of Chemical Process Integration and Resources Utilization, School of Chemical Engine
  • Luo Y; Hebei Provincial Key Laboratory of Green Chemical Technology and Highly Efficient Energy Saving, Tianjin Key Laboratory of Chemical Process Safety, National-Local Joint Engineering Laboratory for Energy Conservation of Chemical Process Integration and Resources Utilization, School of Chemical Engine
  • Wu L; Hebei Provincial Key Laboratory of Green Chemical Technology and Highly Efficient Energy Saving, Tianjin Key Laboratory of Chemical Process Safety, National-Local Joint Engineering Laboratory for Energy Conservation of Chemical Process Integration and Resources Utilization, School of Chemical Engine
  • Sun S; Hebei Provincial Key Laboratory of Green Chemical Technology and Highly Efficient Energy Saving, Tianjin Key Laboratory of Chemical Process Safety, National-Local Joint Engineering Laboratory for Energy Conservation of Chemical Process Integration and Resources Utilization, School of Chemical Engine
  • Li J; Hebei Provincial Key Laboratory of Green Chemical Technology and Highly Efficient Energy Saving, Tianjin Key Laboratory of Chemical Process Safety, National-Local Joint Engineering Laboratory for Energy Conservation of Chemical Process Integration and Resources Utilization, School of Chemical Engine
  • Wang Y; Hebei Provincial Key Laboratory of Green Chemical Technology and Highly Efficient Energy Saving, Tianjin Key Laboratory of Chemical Process Safety, National-Local Joint Engineering Laboratory for Energy Conservation of Chemical Process Integration and Resources Utilization, School of Chemical Engine
  • Liu G; Hebei Provincial Key Laboratory of Green Chemical Technology and Highly Efficient Energy Saving, Tianjin Key Laboratory of Chemical Process Safety, National-Local Joint Engineering Laboratory for Energy Conservation of Chemical Process Integration and Resources Utilization, School of Chemical Engine
  • Chen Z; Department of Chemical Engineering, University of Waterloo, Waterloo, ON, N2L 3G1, Canada.
Adv Sci (Weinh) ; 9(4): e2104237, 2022 Feb.
Article en En | MEDLINE | ID: mdl-34850599
Rational design of metal oxide supported non-precious metals is essential for the development of stable and high-efficiency oxygen reduction reaction (ORR) electrocatalysts. Here, an efficient ORR catalyst consisting of binary Fe/Co nanoclusters supported by defective tungsten oxide and embedded N-doped carbon layer (NC) with a 3D ordered macroporous architecture (3DOM Fe/Co@NC-WO2- x ) is developed. The oxygen deficient 3DOM WO2- x not only serves as a porous and stable support, but also enhances the conductivity and ensures good dispersion of the binary Fe/Co nanocluster, benefiting its ORR catalytic activity. Theoretical calculation shows that there exists a synergistic effect of electron transfer from Fe to Co in the supported binary Fe/Co cluster, promoting the ORR reaction energetics. Accordingly, the 3DOM Fe/Co@NC-WO2- x catalyst exhibits excellent ORR activity in alkaline medium with a half wave potential (E1/2 ) of 0.87 V higher than that of Pt/C (0.85 V). The zinc-air batteries assembled by 3DOM Fe/Co@NC-WO2- x cathode deliver a higher power density and specific capacity than that of Pt/C. A new strategy of combining synergistic binary-metal nanoclusters and conductive metal oxide support design is provided here to develop efficient and durable ORR electrocatalyst.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Adv Sci (Weinh) Año: 2022 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Adv Sci (Weinh) Año: 2022 Tipo del documento: Article