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Designing high-energy lithium–sulfur batteries

Chemical Society Reviews · 2016 · Vol. 45(20) · pp. 5605–5634
Zhi Wei SehYongming SunQianfan ZhangYi Cui

Abstract

Due to their high energy density and low material cost, lithium-sulfur batteries represent a promising energy storage system for a multitude of emerging applications, ranging from stationary grid storage to mobile electric vehicles. This review aims to summarize major developments in the field of lithium-sulfur batteries, starting from an overview of their electrochemistry, technical challenges and potential solutions, along with some theoretical calculation results to advance our understanding of the material interactions involved. Next, we examine the most extensively-used design strategy: encapsulation of sulfur cathodes in carbon host materials. Other emerging host materials, such as polymeric and inorganic materials, are discussed as well. This is followed by a survey of novel battery configurations, including the use of lithium sulfide cathodes and lithium polysulfide catholytes, as well as recent burgeoning efforts in the modification of separators and protection of lithium metal anodes. Finally, we conclude with an outlook section to offer some insight on the future directions and prospects of lithium-sulfur batteries.

Advanced Battery Materials and TechnologiesAdvancements in Battery MaterialsThermal Expansion and Ionic ConductivityLithium (medication)SulfurEnergy (signal processing)High energyMaterials scienceChemistryEnvironmental scienceProcess engineeringEngineering physicsEngineering
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References
A highly efficient polysulfide mediator for lithium–sulfur batteries
Nature Communications · 2015 · 2,004 citations
Building better batteries
Nature · 2008 · 19,103 citations
Polysulfide Shuttle Study in the Li/S Battery System
Journal of The Electrochemical Society · 2004 · 2,060 citations
The Li-Ion Rechargeable Battery: A Perspective
Journal of the American Chemical Society · 2013 · 9,473 citations
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