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A coupling for success: Controlled growth of Co/CoOx nanoshoots on perovskite mesoporous nanofibres as high-performance trifunctional electrocatalysts in alkaline condition

  • Bin Hua
  • , Meng Li
  • , Yi Fei Sun
  • , Ya Qian Zhang
  • , Ning Yan
  • , Jian Chen
  • , Thomas Thundat
  • , Jian Li
  • , Jing Li Luo
  • University of Alberta
  • University of Amsterdam
  • National Research Council of Canada
  • Huazhong University of Science and Technology

Research output: Contribution to journalArticlepeer-review

210 Scopus citations

Abstract

The high cost and poor durability of noble metal electrocatalysts for bifunctional oxygen catalysis and water splitting have hindered the widespread adoption of many energy storage and conversion technologies. In order for these technologies to be more competitive, advanced electrocatalysts with much higher performance and lower cost are required. The structural and chemical flexibilities of perovskite oxides enable them to be easily modified for diverse catalytic applications. Here we combine three strategies to develop a high-performance trifunctional perovskite electrocatalysts: 1) design a mesoporous fibrous nanostructure; 2) couple a dual functional system; and 3) engineer surface oxygen vacancies. The obtained nanomaterial shows promise to catalyze ORR/OER/HER in alkaline conditions, implying that optimization of the internal/external structure via engineering the defect chemistry of a complex perovskite catalyst would be helpful in advancing its catalytic activity. This protocol discloses an exciting new opportunity to design multifunctional perovskite catalysts for energy storage and conversion.

Original languageEnglish
Pages (from-to)247-254
Number of pages8
JournalNano Energy
Volume32
DOIs
StatePublished - Feb 1 2017

Keywords

  • Bifunctional oxygen catalysis
  • Double perovskite
  • Nanoarchitectures
  • Overall water splitting
  • Synergetic effects

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