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Advances in Li–S batteries

Journal of Materials Chemistry · 2010 · Vol. 20(44) · pp. 9821–9821
Xiulei JiLinda F. Nazar

Abstract

Rechargeable Li–S batteries have received ever-increasing attention recently due to their high theoretical specific energy density, which is 3 to 5 times higher than that of Li ion batteries based on intercalation reactions. Li–S batteries may represent a next-generation energy storage system, particularly for large scale applications. The obstacles to realize this high energy density mainly include high internal resistance, self-discharge and rapid capacity fading on cycling. These challenges can be met to a large degree by designing novel sulfur electrodes with “smart” nanostructures. This highlight provides an overview of major developments of positive electrodes based on this concept.

Advanced Battery Materials and TechnologiesAdvancements in Battery MaterialsAdvanced battery technologies researchEnergy storageIntercalation (chemistry)Energy densityInternal resistanceNanotechnologyMaterials scienceElectrodeComputer scienceEngineering physicsBattery (electricity)

Funding

  • Natural Sciences and Engineering Research Council of Canada
Citations
1,932
FWCI
65.46
field-weighted impact
References
59
Percentile
100%
vs. same field & year
Citations per year
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References
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Journal of The Electrochemical Society · 2004 · 2,060 citations
Helical microtubules of graphitic carbon
Nature · 1991 · 42,584 citations
On the Surface Chemical Aspects of Very High Energy Density, Rechargeable Li–Sulfur Batteries
Journal of The Electrochemical Society · 2009 · 1,414 citations
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