Graphene origin
GMG says the graphene comes from its self-developed production system and is processed through its co-located pilot plant.
SUPA G® is GMG’s graphene slurry for lithium-ion battery enhancement. It is designed as a liquid graphene material that can be added into or coated onto customer lithium-ion battery cathodes and anodes.
A liquid graphene material creates a practical route for battery trials and electrode development.
GMG positions SUPA G® for addition into or coating onto lithium-ion cathodes and anodes.
Product materials describe 0.5-2 wt% loading by weight for evaluation.
GMG links the material to charge and discharge rate-tolerance behaviour.
SUPA G® turns GMG’s graphene capability into a material format battery teams can evaluate. Instead of presenting graphene as an abstract ingredient, the slurry gives partners a route for electrode trials and controlled integration work.
GMG says the graphene comes from its self-developed production system, is processed through a co-located pilot plant and is finally made into a liquid graphene product for lithium-ion battery electrode use.
Developed from GMG’s in-house graphene production and pilot-plant processing.
Positioned for lithium-ion battery cathode and anode development.
Built for technical validation before broad commercial claims.
The product story is clearest when partners can see what is being supplied, how it enters battery-material work and which performance signals need validation.
The material path stays focused on integration: graphene source, slurry processing, low-dosage electrode use and partner validation.
GMG says the graphene comes from its self-developed production system and is processed through its co-located pilot plant.
The liquid graphene format gives partners a practical route for controlled material handling, testing and integration.
GMG positions SUPA G® for adding into or coating onto lithium-ion battery cathodes and anodes at low loading.
The next step is controlled partner testing: conductivity, loading, calendaring integrity and high-rate battery behaviour.

The technical case is strongest when the reported data is grouped around the questions battery teams ask first: resistivity, loading, surface area, density, particle structure and rate behaviour.
GMG reports 2.5 times lower mean ionic resistivity than standard graphite in the recent study.
Product materials describe 0.5-2 wt% loading, compared with 2-5 wt% for common carbon additives.
GMG lists approximately 250 m²/g surface area, compared with about 60 m²/g for a common additive.
SUPA G® is presented with 0.3-0.4 g/cm³ bulk density.
GMG describes large particles around 20 µm plus sub-1 µm particles.
GMG says its graphene increased lithium-ion battery rate tolerance.
GMG presents three technical figures and a comparison table. Keeping them together makes the evidence easier to scan before the contact step.



| Property | Standard industry lithium-ion battery carbon additive | GMG SUPA G® |
|---|---|---|
| Bulk density | 0.12-0.25 g/cm³ | 0.3-0.4 g/cm³ |
| Surface area | ~60 m²/g | 250 m²/g |
| Typical loading in electrode | 2-5 wt% | 0.5-2 wt% |
| High-rate performance | Standard application | Excellent for very high-rate applications |
SUPA G® is most useful when the next step is technical validation: the buyer needs a material format, a target electrode or application and a clear test path.
For cathode and anode teams evaluating conductive additives, electrode loading and high-rate performance.
For partners that need a practical material format before testing coatings, composites or other applied programs.
For organizations evaluating material access, validation requirements and supply assumptions.
No. SUPA G® is a graphene slurry material for battery enhancement and application development. It supports battery work, but it is not a finished battery cell.
GMG describes SUPA G® as a liquid graphene product that can be added into or coated onto lithium-ion battery cathodes or anodes.
The first proof points are ionic resistivity, particle distribution, bulk density, surface area, loading range, calendaring integrity and high-rate behaviour.
Partners can discuss the target application, material requirements, validation method and commercial assumptions with GMG.