4.8 Article

High-voltage asymmetric metal-air batteries based on polymeric single-Zn2+-ion conductor

Journal

MATTER
Volume 4, Issue 4, Pages 1287-1304

Publisher

CELL PRESS
DOI: 10.1016/j.matt.2021.01.004

Keywords

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Funding

  1. National Research Foundation of Korea (NRF) - Ministry of Science and ICT [2018M3D1A1057844]
  2. National Natural Science Foundation of China [21972163]
  3. Fundamental Research Funds for the Central Universities
  4. DHU Distinguished Young Professor Program
  5. development fund for Shanghai talents
  6. [U1732267]

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A high-performance asymmetric metal-air battery was developed with a specially designed separator and electrocatalyst, leading to enhanced battery performance.
Asymmetric-electrolyte metal-air batteries (AMABs) deliver high operating voltage and energy density. However, the demand for ion-selective transport separator and precious metal electrocatalysts hampers their applications. To address this issue, we develop a polyacrylonitrile (PAN) separator that can selectively transport Zn2+ ions and an atomically dispersed Co electrocatalyst that can catalyze oxygen evolution reactions (OERs) and oxygen reduction reactions (ORRs) in the challenging acidic medium. The selective ion transport behavior was associated with the Zn2+ ions' bonded ladder structure of PAN, which raises the ion migration energy barrier for the crossover of H+ and OH- In terms of electrocatalysts, extensive ex situ and in situ characterizations suggest that Co single-atom sites stably catalyze the OER and ORR Several types of AMABs (metals Zn, Si, Sn) were tested. The assembled asymmetric metal-air Zn-, Si-, and Sn-air batteries delivered enhanced battery performance that surpassed those of recently reported Zn-, Si-, and Sn-air batteries, respectively.

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