4.8 Article

High Rate Magnesium-Sulfur Battery with Improved Cyclability Based on Metal-Organic Framework Derivative Carbon Host

期刊

ADVANCED MATERIALS
卷 30, 期 7, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.201704166

关键词

metal-organic frameworks; Mg-S batteries; N and Co codoping; ZIF derivative carbon

资金

  1. National Key Research and Development Program [2016YFB0901600]
  2. National Natural Science Foundation of China [51372263]
  3. Chinese Academy of Sciences [KGZD-EW-T06]
  4. Chinese Academy of Sciences

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Mg batteries have the advantages of resource abundance, high volumetric energy density, and dendrite-free plating/stripping of Mg anodes. However the injection of highly polar Mg2+ cannot maintain the structural integrity of intercalation-type cathodes even for open framework prototypes. The lack of high-voltage electrolytes and sluggish Mg2+ diffusion in lattices or through interfaces also limit the energy density of Mg batteries. Mg-S system based on moderate-voltage conversion electrochemistry appears to be a promising solution to high-energy Mg batteries. However, it still suffers from poor capacity and cycling performances so far. Here, a ZIF-67 derivative carbon framework codoped by N and Co atoms is proposed as effective S host for highly reversible Mg-S batteries even under high rates. The discharge capacity is as high as approximate to 600 mA h g(-1) at 1 C during the first cycle, and it is still preserved at approximate to 400 mA h g(-1) after at least 200 cycles. Under a much higher rate of 5 C, a capacity of 300-400 mA h g(-1) is still achievable. Such a superior performance is unprecedented among Mg-S systems and benefits from multiple factors, including heterogeneous doping, Li-salt and Cl- addition, charge mode, and cut-off capacity, as well as separator decoration, which enable the mitigation of electrode passivation and polysulfide loss.

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