The Li–S system offers a tantalizing battery for electric vehicles and renewable energy storage due to its high theoretical capacity of 1675 mAh g^(–1) and its employment of abundant and available materials. One major challenge in this system stems from the formation of soluble polysulfides during the reduction of S_8, the active cathode material, during discharge. The ability to deploy this system hinges on the ability to control the behavior of these polysulfides by containing them in the cathode and allowing for further redox. Here, we exploit the high surface areas and good electrical conductivity of mesoporous carbons (MC) to achieve high sulfur utilization while functionalizing the MC with sulfur (S–MC) in order to modify the surface ...
Given the great promise of lithium-sulfur (Li−S) batteries as next-generation high-capacity energy s...
Despite the remarkably high theoretical energy density (∼2600 W h kg–1), lithium–sulfur (Li–S) batte...
Despite the remarkably high theoretical energy density (∼2600 W h kg–1), lithium–sulfur (Li–S) batte...
The Li–S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
The Li–S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
The Li–S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
The Li-S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
The Li-S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
The Li-S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
Lithium–sulfur (Li–S) batteries are of great interest due to their potentially high energy density, ...
The lithium–sulfur (Li–S) battery is one of the most promising candidates for the next generation of...
In Li-S batteries, it is important to ensure efficient reversible conversion of sulfur to lithium po...
In Li‐S batteries, it is important to ensure efficient reversible conversion of sulfur to lithium po...
The lithium–sulfur battery holds a high theoretical energy density, 4–5 times that of today’s lithiu...
Lithium–sulfur (Li–S) battery system is endowed with tremendous energy density, resulting from the c...
Given the great promise of lithium-sulfur (Li−S) batteries as next-generation high-capacity energy s...
Despite the remarkably high theoretical energy density (∼2600 W h kg–1), lithium–sulfur (Li–S) batte...
Despite the remarkably high theoretical energy density (∼2600 W h kg–1), lithium–sulfur (Li–S) batte...
The Li–S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
The Li–S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
The Li–S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
The Li-S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
The Li-S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
The Li-S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
Lithium–sulfur (Li–S) batteries are of great interest due to their potentially high energy density, ...
The lithium–sulfur (Li–S) battery is one of the most promising candidates for the next generation of...
In Li-S batteries, it is important to ensure efficient reversible conversion of sulfur to lithium po...
In Li‐S batteries, it is important to ensure efficient reversible conversion of sulfur to lithium po...
The lithium–sulfur battery holds a high theoretical energy density, 4–5 times that of today’s lithiu...
Lithium–sulfur (Li–S) battery system is endowed with tremendous energy density, resulting from the c...
Given the great promise of lithium-sulfur (Li−S) batteries as next-generation high-capacity energy s...
Despite the remarkably high theoretical energy density (∼2600 W h kg–1), lithium–sulfur (Li–S) batte...
Despite the remarkably high theoretical energy density (∼2600 W h kg–1), lithium–sulfur (Li–S) batte...