© The Royal Society of Chemistry 2020. Irreversible loss of soluble lithium polysulfides (LiPSs) is a major obstacle deteriorating the performance of lithium-sulfur batteries. Multiple innovative approaches have recently been developed to resolve these LiPS issues. Melt-diffusion of sulfur into porous carbon is a representative solution for preventing the diffusion out of LiPSs, which aims to coordinate the sulfur on the electrochemically active site, accordingly. However, it has been overlooked that the mass transport motion of LiPSs has a crucial role in achieving high-performance. In this paper, we highlight the importance of the mass transport of soluble sulfur in the cathode structure by introducing various starting materials, i.e., so...
The rapid development of wireless electronic devices, electric vehicles and grid storage has brought...
Diffusion processes at the electrode/electrolyte interphase drives the performance of lithium-sulfur...
The lithium–sulfur battery holds a high theoretical energy density, 4–5 times that of today’s lithiu...
Lithium-sulfur batteries have drawn a lot of attentions due to the high theoretical discharge capaci...
Lithium-Sulfur Batteries are one of the promising technologies for future energy storage application...
The dissolution of polysulfides is widely considered to be a major obstacle for developing lithium-s...
Sulfur has received considerable attention as a cathode material for lithium-sulfur (Li-S) batteries...
Lithium-sulfur (Li-S) batteries offer a high theoretical energy density of 2567 W?h?kg???1 by the mu...
Sulfur has received considerable attention as a cathode material for lithium—sulfur (Li—S) batteries...
We have developed an electrolysis approach that allows effective and uniform incorporation of sulfur...
Lithium-sulfur batteries are among the most promising systems for the future generation of rechargea...
Utilizing the unparalleled theoretical capacity of sulfur reaching 1675 mAh/g, lithium-sulfur (Li-S)...
We report an electrolyte with low flammability, based on diethylene glycol dimethyl ether (DEGDME) d...
Lithium-sulfur (Li-S) batteries are largely regarded as the next-generation energy storage system du...
In Li-S batteries, it is important to ensure efficient reversible conversion of sulfur to lithium po...
The rapid development of wireless electronic devices, electric vehicles and grid storage has brought...
Diffusion processes at the electrode/electrolyte interphase drives the performance of lithium-sulfur...
The lithium–sulfur battery holds a high theoretical energy density, 4–5 times that of today’s lithiu...
Lithium-sulfur batteries have drawn a lot of attentions due to the high theoretical discharge capaci...
Lithium-Sulfur Batteries are one of the promising technologies for future energy storage application...
The dissolution of polysulfides is widely considered to be a major obstacle for developing lithium-s...
Sulfur has received considerable attention as a cathode material for lithium-sulfur (Li-S) batteries...
Lithium-sulfur (Li-S) batteries offer a high theoretical energy density of 2567 W?h?kg???1 by the mu...
Sulfur has received considerable attention as a cathode material for lithium—sulfur (Li—S) batteries...
We have developed an electrolysis approach that allows effective and uniform incorporation of sulfur...
Lithium-sulfur batteries are among the most promising systems for the future generation of rechargea...
Utilizing the unparalleled theoretical capacity of sulfur reaching 1675 mAh/g, lithium-sulfur (Li-S)...
We report an electrolyte with low flammability, based on diethylene glycol dimethyl ether (DEGDME) d...
Lithium-sulfur (Li-S) batteries are largely regarded as the next-generation energy storage system du...
In Li-S batteries, it is important to ensure efficient reversible conversion of sulfur to lithium po...
The rapid development of wireless electronic devices, electric vehicles and grid storage has brought...
Diffusion processes at the electrode/electrolyte interphase drives the performance of lithium-sulfur...
The lithium–sulfur battery holds a high theoretical energy density, 4–5 times that of today’s lithiu...