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      Challenges, mitigation strategies and perspectives in development of zinc-electrode materials and fabrication for rechargeable zinc–air batteries

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          Abstract

          A comprehensive understanding of the challenges in zinc-electrode materials and fabrication that limit the continuous development of rechargeable zinc–air batteries.

          Abstract

          As a promising energy storage device, the rechargeable zinc–air battery (RZAB) has attracted increasing attention because of its high energy density, cost-effectiveness, and high safety, and the rich abundance of zinc, as well as its environmental benignity. However, the widespread application of RZABs still faces considerable challenges derived from zinc-electrodes, electrolytes, and air-electrodes. In this paper, specific attention is given to RZAB zinc-electrode materials and fabrication with focus on the fundamental understanding of zinc-electrode reaction mechanisms, technical challenges, mitigation strategies, and perspectives. Particularly, the approaches to overcome the challenges are also presented and analyzed for facilitating further research and development of RZABs.

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          Author and article information

          Contributors
          Journal
          EESNBY
          Energy & Environmental Science
          Energy Environ. Sci.
          Royal Society of Chemistry (RSC)
          1754-5692
          1754-5706
          November 7 2018
          2018
          : 11
          : 11
          : 3075-3095
          Affiliations
          [1 ]Institute for Sustainable Energy/College of Science
          [2 ]Shanghai University
          [3 ]Shanghai
          [4 ]China
          [5 ]Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education)
          [6 ]School of Environment and Materials Engineering
          [7 ]Shanghai Polytechnic University
          [8 ]Department of Chemistry and Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials
          [9 ]Institute of New Energy, iChEM (Collaborative Innovation Center of Chemistry for Energy Materials)
          [10 ]Fudan University
          [11 ]200433, Shanghai
          Article
          10.1039/C8EE01991F
          5f664221-f522-4952-b8d5-f97ab1a5453a
          © 2018

          http://rsc.li/journals-terms-of-use

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