Technology

The Carbon Nanotubes Super Battery.

CNSB fuses carbon nanotube electrodes, graphene composites and supercapacitor physics into one cell. Charge is stored at molecular surfaces — enabling near-instant charging, virtually unlimited cycle life, and complete elimination of thermal runaway.

Core material stack

Five engineered materials, one cell.

Carbon NanotubesPrimary electrode conductor
GrapheneHigh-surface electrode substrate
Fullerene CompoundsInterface stabilization
Sodium CompoundsHybrid ion carrier
Ionic Liquid ElectrolyteNon-flammable ion transport

How it works

Surface charge storage. Zero combustion chemistry.

  1. 1

    Charge is stored at electrode surfaces — enabling ultra-fast charge and discharge with no chemical degradation.

  2. 2

    80% of stored power is delivered to the end use; 20% recycles internally to sustain the generation loop.

  3. 3

    Onboard BMS equalization keeps every cell balanced across 20,000+ cycles and 10–15+ years of service.

  4. 4

    A non-flammable ionic liquid electrolyte eliminates the thermal runaway pathway entirely.

CNSB vs Lithium-Ion

A generational leap on every metric.

Metric
CNSB
Li-Ion
Cycle Life
20,000+
500–2,000
Charge Time
5–30 min
4–12 hrs
Fire Risk
Zero
Inherent
Temp Range
−40 to +70°C
0 to 45°C
Maintenance
None
Required
Carbon Tax
Zero / Credit
Exposure
Supply Chain
Carbon (abundant)
Lithium / Cobalt
Lifespan
10–15+ years
3–5 years