Lithium–sulfur batteries are promising for low-cost and high-energy storage, but their applications are still limited by poor cycling stability owing to soluble lithium polysulfide shuttling during battery operation. Avoiding shuttle effect is challenging but it is essential to avoid active material loss and prevent performance decay. Here, we use an ultrathin layer of MoS2 with thickness of 10–40 nm, which is 1–2 orders of magnitude thinner than conventional interlayers, for Li–S batteries to mitigate polysulfide shuttling. The MoS2 layer formed by exfoliated nanoflakes is deposited by the scalable liquid-based self-assembly method. With less than 1% of additional weight in the cathode, the MoS2 interlayer with complete coverage inhibits p...
The lithium sulfur battery is an attractive energy storage device because of its high theoretical ca...
Challenges from the insulating S and Li2S2/Li2S (Li2S1–2) discharge products are restricting the dev...
This is the first targeted review of the synthesis-microstructure- electrochemical performance relat...
Lithium–sulfur (Li–S) batteries are attractive as sulfur offers an order of magnitude higher charge-...
The polysulfide shuttle is a major challenge for practical application of lithium–sulfur (Li–S) batt...
Lithium-sulphur battery technology promises much higher energy storage capacity compared to common L...
While lithium sulfur batteries (Li–S) hold promise as future high energy density low cost energy sto...
The development of lithium–sulfur batteries is limited by the poor conductivity of sulfur cathodes a...
MoS2 holds great promise as high-rate electrode for lithium-ion batteries since its large interlayer...
Polysulfides shuttling and lithium dendrite growth are two challenges confronting lithium–sulfur bat...
Lithium-sulfur (Li-S) battery technology promises much higher energy storage capacity compared to co...
Polysulfides shuttling and lithium dendrite growth are two challenges confronting lithium–sulfur bat...
Shuttle effect has always been a critical obstacle to the application of lithium–sulfur (Li–S) batte...
The lithium–sulfur (Li–S) battery is one of the most promising candidates for the next generation of...
In Li–S batteries, the shuttle effect of polysulfide lithium (LiPS) on the cathode side and the grow...
The lithium sulfur battery is an attractive energy storage device because of its high theoretical ca...
Challenges from the insulating S and Li2S2/Li2S (Li2S1–2) discharge products are restricting the dev...
This is the first targeted review of the synthesis-microstructure- electrochemical performance relat...
Lithium–sulfur (Li–S) batteries are attractive as sulfur offers an order of magnitude higher charge-...
The polysulfide shuttle is a major challenge for practical application of lithium–sulfur (Li–S) batt...
Lithium-sulphur battery technology promises much higher energy storage capacity compared to common L...
While lithium sulfur batteries (Li–S) hold promise as future high energy density low cost energy sto...
The development of lithium–sulfur batteries is limited by the poor conductivity of sulfur cathodes a...
MoS2 holds great promise as high-rate electrode for lithium-ion batteries since its large interlayer...
Polysulfides shuttling and lithium dendrite growth are two challenges confronting lithium–sulfur bat...
Lithium-sulfur (Li-S) battery technology promises much higher energy storage capacity compared to co...
Polysulfides shuttling and lithium dendrite growth are two challenges confronting lithium–sulfur bat...
Shuttle effect has always been a critical obstacle to the application of lithium–sulfur (Li–S) batte...
The lithium–sulfur (Li–S) battery is one of the most promising candidates for the next generation of...
In Li–S batteries, the shuttle effect of polysulfide lithium (LiPS) on the cathode side and the grow...
The lithium sulfur battery is an attractive energy storage device because of its high theoretical ca...
Challenges from the insulating S and Li2S2/Li2S (Li2S1–2) discharge products are restricting the dev...
This is the first targeted review of the synthesis-microstructure- electrochemical performance relat...