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Lithium–Sulfur Batteries: Electrochemistry, Materials, and Prospects

Angewandte Chemie International Edition · 2013 · Vol. 52(50) · pp. 13186–13200
Ya‐Xia YinSen XinYu‐Guo GuoLi‐Jun Wan

Abstract

With the increasing demand for efficient and economic energy storage, Li-S batteries have become attractive candidates for the next-generation high-energy rechargeable Li batteries because of their high theoretical energy density and cost effectiveness. Starting from a brief history of Li-S batteries, this Review introduces the electrochemistry of Li-S batteries, and discusses issues resulting from the electrochemistry, such as the electroactivity and the polysulfide dissolution. To address these critical issues, recent advances in Li-S batteries are summarized, including the S cathode, Li anode, electrolyte, and new designs of Li-S batteries with a metallic Li-free anode. Constructing S molecules confined in the conductive microporous carbon materials to improve the cyclability of Li-S batteries serves as a prospective strategy for the industry in the future.

Advanced Battery Materials and TechnologiesAdvancements in Battery MaterialsAdvanced battery technologies researchPolysulfideAnodeElectrochemistryMicroporous materialCathodeEnergy storageMaterials scienceBattery (electricity)ElectrolyteOrganic radical battery
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References
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Accounts of Chemical Research · 2012 · 2,319 citations
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Nature · 2008 · 19,103 citations
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Journal of The Electrochemical Society · 2004 · 2,060 citations
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