4.8 Article

Oxygen-Deficient Ferric Oxide as an Electrochemical Cathode Catalyst for High-Energy Lithium-Sulfur Batteries

Journal

SMALL
Volume 16, Issue 22, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.202000870

Keywords

electrochemical catalysts; lithium-sulfur batteries; oxygen-deficient ferric oxide; polysulfides conversion

Funding

  1. National Key Research and Development Program of China [2016YFB0100203]
  2. National Natural Science Foundation of China [21922508, 21673116, 21633003, U1801251]
  3. Natural Science Foundation of Jiangsu province [BK20190009]
  4. PAPD of Jiangsu Higher Education Institutions

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Lithium-sulfur batteries, as one of promising next-generation energy storage devices, hold great potential to meet the demands of electric vehicles and grids due to their high specific energy. However, the sluggish kinetics and the inevitable shuttle effect severely limit the practical application of this technology. Recently, design of composite cathode with effective catalysts has been reported as an essential way to overcome these issues. In this work, oxygen-deficient ferric oxide (Fe2O3-x), prepared by lithiothermic reduction, is used as a low-cost and effective cathodic catalyst. By introducing a small amount of Fe2O3-x into the cathode, the battery can deliver a high capacity of 512 mAh g(-1) over 500 cycles at 4 C, with a capacity fade rate of 0.049% per cycle. In addition, a self-supporting porous S@KB/Fe2O3-x cathode with a high sulfur loading of 12.73 mg cm(-2) is prepared by freeze-drying, which can achieve a high areal capacity of 12.24 mAh cm(-2) at 0.05 C. Both the calculative and experimental results demonstrate that the Fe2O3-x has a strong adsorption toward soluble polysulfides and can accelerate their subsequent conversion to insoluble products. As a result, this work provides a low-cost and effective catalyst candidate for the practical application of lithium-sulfur batteries.

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