A perspective toward practical lithium–sulfur batteries
Lithium–sulfur (Li–S) batteries have long been expected to be a promising high-energy-
density secondary battery system since their first prototype in the 1960s. During the past …
density secondary battery system since their first prototype in the 1960s. During the past …
Working principles of lithium metal anode in pouch cells
Lithium metal battery has been considered as one of the potential candidates for next‐
generation energy storage systems. However, the dendrite growth issue in Li anodes results …
generation energy storage systems. However, the dendrite growth issue in Li anodes results …
Lithium–sulfur batteries under lean electrolyte conditions: challenges and opportunities
The development of energy‐storage devices has received increasing attention as a
transformative technology to realize a low‐carbon economy and sustainable energy supply …
transformative technology to realize a low‐carbon economy and sustainable energy supply …
Current status and future prospects of metal–sulfur batteries
Lithium–sulfur batteries are a major focus of academic and industrial energy‐storage
research due to their high theoretical energy density and the use of low‐cost materials. The …
research due to their high theoretical energy density and the use of low‐cost materials. The …
Accelerated Multi‐step Sulfur Redox Reactions in Lithium‐Sulfur Batteries Enabled by Dual Defects in Metal‐Organic Framework‐based Catalysts
The sluggish sulfur redox kinetics and shuttle effect of lithium polysulfides (LiPSs) are
recognized as the main obstacles to the practical applications of the lithium‐sulfur (Li− S) …
recognized as the main obstacles to the practical applications of the lithium‐sulfur (Li− S) …
Electrochemical kinetic modulators in lithium–sulfur batteries: from defect‐rich catalysts to single atomic catalysts
Lithium–sulfur batteries exhibit unparalleled merits in theoretical energy density (2600 W h
kg− 1) among next‐generation storage systems. However, the sluggish electrochemical …
kg− 1) among next‐generation storage systems. However, the sluggish electrochemical …
A Highly Conductive MOF of Graphene Analogue Ni3(HITP)2 as a Sulfur Host for High‐Performance Lithium–Sulfur Batteries
Abstract Lithium–sulfur (Li–S) batteries have been considered as one of the most promising
energy storage systems owing to their high theoretical capacity and energy density …
energy storage systems owing to their high theoretical capacity and energy density …
[HTML][HTML] 2021 roadmap on lithium sulfur batteries
Batteries that extend performance beyond the intrinsic limits of Li-ion batteries are among
the most important developments required to continue the revolution promised by …
the most important developments required to continue the revolution promised by …
Tailoring the interface between sulfur and sulfide solid electrolyte for high-areal-capacity all-solid-state lithium–sulfur batteries
Fabricating high-capacity all-solid-state lithium-sulfur batteries (ASSLSBs) with long lifetimes
is realistically challenging because of the poor ionic contact between the insulating element …
is realistically challenging because of the poor ionic contact between the insulating element …
A review: electrospun nanofiber materials for lithium‐sulfur batteries
Abstract Lithium‐sulfur (Li‐S) batteries are in the spotlight because their outstanding
theoretical specific energy is much higher than those of the commercial lithium ion (Li‐ion) …
theoretical specific energy is much higher than those of the commercial lithium ion (Li‐ion) …