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Advanced sulfur batteries could revolutionize the city life, including electrical vehicles and grid systems. In article number 1707411, Chong Rae Park, Seung Jae Yang, and co‐workers revisit the literature on functional interlayers and separators for lithium‐sulfur batteries. The trade‐off relationships of PS‐, e‐, and k‐functions are outlined and design rules for balancing these three functions are...
The lithium–sulfur (Li–S) battery is considered as a promising future energy storage device owing to its high theoretical energy density, low cost of the raw active material (sulfur), and its environmental friendliness. On the other hand, there are still challenging issues for the practical applications of Li–S batteries, including low sulfur utilization, poor cyclability, and rate capability. Although...
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