Breakthrough in Lithium-Sulfur Battery Technology Using Nanotechnology
Researchers at the Shenyang University of Chemical Technology have made significant progress in addressing the polysulfides shuttle effect of Lithium-Sulfur (Li-S) batteries, a major challenge in the development of high-performance rechargeable batteries. By designing a novel nanocomposite electrocatalyst, Co@C/CNT, the team has achieved improved kinetic behavior, rate performance, and cycling stability in Li-S battery technology.
Key Takeaways:
- A new nanocomposite electrocatalyst, Co@C/CNT, has been developed to mitigate the polysulfides shuttle effect in Li-S batteries.
- The material is prepared by direct carbonization of a metal-organic framework/carbon nanotube composite.
- Co@C/CNT functions as both a polysulfide adsorber and a catalyst for redox reactions.
- The resulting three-dimensional conductive network facilitates rapid electron transfer, enhancing discharge specific capacity.
- The uniformly dispersed cobalt nanoparticles expedite the uptake of long-chain polysulfides and catalyze their conversion to Li2S.
- The Li-S battery demonstrates superior Li+ diffusivity, commendable rate performance (705.8 mAh g-1 at 2C), and remarkable cycling stability (902.5 mAh g-1 after 200 cycles at 0.2C).
- The capacity reduction per cycle is as low as 0.12% per cycle.
Statistics:
- The new nanocomposite electrocatalyst, Co@C/CNT, was prepared by carbonizing a metal-organic framework/carbon nanotube composite.
- The Li-S battery demonstrated a discharge specific capacity of 902.5 mAh g-1 after 200 cycles at 0.2C.
- The rate performance was 705.8 mAh g-1 at 2C.
- The capacity reduction per cycle was 0.12%.
- The Li-S battery showed superior Li+ diffusivity.
Sources:
- Co-mof-derived Cobalt Nanoparticles On Carbon Nanotube for High-performance Lithium-sulfur Battery Separators. Journal of Power Sources, 2025;647.
- Elsevier (www.elsevier.com)
- Journal of Power Sources (www.journals.elsevier.com/journal-of-power-sources)
- NewsRx. Data on Carbon Nanotubes Reported by Researchers at Shenyang University of Chemical Technology (Co-mof-derived Cobalt Nanoparticles On Carbon Nanotube for High-performance Lithium-sulfur Battery Separators). News of Science. August 24, 2025; p 337.