4.7 Review

A promising energy storage system: rechargeable Ni-Zn battery

Journal

RARE METALS
Volume 36, Issue 5, Pages 381-396

Publisher

NONFERROUS METALS SOC CHINA
DOI: 10.1007/s12598-017-0905-x

Keywords

Rechargeable Ni-Zn batteries; Nanomaterials; Electrolytes; Electrodes

Funding

  1. National Natural Science Foundation of China [21520102002, 91622116]
  2. Program for Changjiang Scholars and Innovative Research Team in the University [IRT1205]
  3. Fundamental Research Funds for the Central Universities [ZD1501]
  4. Long-Term Subsidy Mechanism from the Ministry of Finance
  5. National Key Research and Development Project [2016YFF0204402]
  6. Ministry of Education of China

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The sharp depletion of fossil fuel resources and its associated increasingly deteriorated environmental pollution are vital challenging energy issues, which are one of the most crucial research hot spots in the twenty-first century. Rechargeable Ni-Zn batteries (RNZBs), delivering high power density in aqueous electrolytes with stable cycle performance, are expected to be promising candidates to alleviate the current energy and environmental problems, and play an important role in green power sources. Many efforts have been focused on the investigations and improvements of RNZBs in recent decades, and it is necessary to summarize and review the achievements and challenges in this advancing field. In this paper, we review various batteries, compare and highlight the advantages of RNZBs, and introduce the recent advances in the development of electrode materials and electrolytes of RNZBs, especially the applications of novel nanostructured materials for the active electrodes. Some prospective investigation trends of RNZBs are also proposed and discussed.

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