4.8 Article

Advanced zinc-air batteries based on high-performance hybrid electrocatalysts

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NATURE COMMUNICATIONS
卷 4, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms2812

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  1. Intel
  2. Stanford GCEP exploratory program
  3. Stinehart/Reed Award from the Stanford Precourt Institute for Energy

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Primary and rechargeable Zn-air batteries could be ideal energy storage devices with high energy and power density, high safety and economic viability. Active and durable electrocatalysts on the cathode side are required to catalyse oxygen reduction reaction during discharge and oxygen evolution reaction during charge for rechargeable batteries. Here we developed advanced primary and rechargeable Zn-air batteries with novel CoO/carbon nanotube hybrid oxygen reduction catalyst and Ni-Fe-layered double hydroxide oxygen evolution catalyst for the cathode. These catalysts exhibited higher catalytic activity and durability in concentrated alkaline electrolytes than precious metal Pt and Ir catalysts. The resulting primary Zn-air battery showed high discharge peak power density similar to 265 mW cm(-2), current density similar to 200 mA cm(-2) at 1V and energy density >700 Wh kg(-1). Rechargeable Zn-air batteries in a tri-electrode configuration exhibited an unprecedented small charge-discharge voltage polarization of similar to 0.70 V at 20 mA cm(-2), high reversibility and stability over long charge and discharge cycles.

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