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Advanced mesoporous carbon material for polysulphide confinement and enhanced Li–S battery performance
The Cell Lab Mesoporous Nano Carbon Powder is a highly engineered carbon matrix designed specifically for lithium–sulphur (Li–S) battery research. It effectively mitigates the common limitations of Li–S systems—such as polysulphide dissolution, volume expansion, and poor electrical conductivity—through its uniform mesoporous structure, large pore volume, and high specific surface area (232 m²/g).
This mesoporous carbon enables efficient sulphur loading (up to 90 wt%), uniform distribution, and stable cycling by providing interconnected ion/electron transport pathways. It serves as an ideal conductive framework and sulphur host, enhancing both the energy density and long-term stability of next-generation Li–S batteries.
High Specific Surface Area (232 m²/g)
Provides abundant active sites and uniform sulphur dispersion, supporting high capacity retention.
Optimised Mesoporous Architecture
Facilitates lithium-ion transport and effectively confines soluble polysulphides to suppress shuttle effects.
High Sulphur Loading Capacity (Up to 90 wt%)
Accommodates high active material content for energy-dense cathode designs.
Stable Conductive Carbon Framework
Ensures excellent electron transport and mechanical durability throughout cycling.
Fine Powder Morphology (D50 ≈ 10 µm)
Easily dispersible in slurries for homogeneous mixing with binders and conductive additives.
| Parameter | Value |
|---|---|
| Appearance | Black powder |
| Composition | Mesoporous carbon |
| Particle Size (D10 / D50 / D90) | 3.7 µm / 10.4 µm / 27.9 µm |
| Tap Density | 0.146 g/cm³ |
| Specific Surface Area | 232 m²/g (mercury intrusion) |
| Theoretical Sulphur Loading | Up to 90 wt% |
| Package Size | 10 g |
Lithium–sulphur (Li–S) battery cathode material
Sulphur host and polysulphide confinement matrix
Conductive additive in high-capacity energy storage electrodes
Catalytic support for redox reactions in electrochemical systems
Material science research and advanced carbon nanostructure studies
Q1: How does mesoporous carbon improve Li–S battery performance?
It provides uniform pores for sulphur encapsulation, preventing polysulphide migration and enhancing cycle life.
Q2: What is the optimal sulphur loading ratio?
Typically up to 80–90 wt%, depending on cathode architecture and binder composition.
Q3: Can this material be used in other battery systems?
Yes. It is suitable for Li–Se, Na–S, and metal–air battery research requiring porous conductive hosts.
Q4: How should it be handled and stored?
Store in a dry, airtight container under inert atmosphere to prevent moisture absorption.
Q5: Is it compatible with polymer or carbon–sulphur composites?
Yes. It blends easily with polymer binders and conductive fillers for flexible or composite electrodes.
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