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As an attractive high‐energy‐density technology, the practical application of lithium–sulfur (Li–S) batteries is severely limited by the notorious dissolution and shuttle effect of lithium polysulfides (LiPS), resulting in sluggish reaction kinetics and uncontrollable dendritic Li growth. Herein, a p‐n typed heterostructure consisting of n‐type MoS2 nanoflowers embedded with p‐type NiO nanoparticles...
Lithium–Sulfur Batteries
A “Quasi‐MOF” nanosphere is introduced by Yongguang Zhang, Xin Wang, Zhongwei Chen, and co‐workers in article number 2105541 as an efficient and durable sulfur electrocatalyst toward accelerated sulfur reduction reaction. The reversible de‐ligandation/ligandation of this Quasi‐MOF over the course of the electrochemical process endows its with excellent catalytic activity and...
Lithium–sulfur (Li–S) batteries are considered as one of the most promising next‐generation rechargeable batteries owing to their high energy density and cost‐effectiveness. However, the sluggish kinetics of the sulfur reduction reaction process, which is so far insufficiently explored, still impedes its practical application. Metal–organic frameworks (MOFs) are widely investigated as a sulfur immobilizer,...
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