[ Composition Patent Pending ]

The
Breakthrough

Ionic conductivity: 301.3 mS/cm

25×
better than state of the art

The best solid electrolytes in research labs achieve ~12 mS/cm. We found one that does 301.3 mS/cm. This isn't iteration. This is a step change.

How it compares

Li₁₀GeP₂S₁₂ (LGPS)
12 mS/cm
Li₆PS₅Cl (Argyrodite)
6 mS/cm
LLZO (Garnet)
1 mS/cm
ZYZ Discovery
301.3 mS/cm
6.3V
Stability Window

Compatible with high-voltage cathodes. No decomposition at operating voltages.

Air
Stable

Unlike sulfide electrolytes, this material doesn't degrade in ambient conditions.

Li⁰
Anode Compatible

Works with lithium metal anodes. Enables highest possible energy density.

What this enables

Fast charging without degradation

High ionic conductivity means ions move faster. Charge in minutes without generating heat or causing dendrite formation.

2-3× energy density

Lithium metal anodes hold 10× more energy than graphite. This electrolyte makes them practical.

Inherently safe

No flammable liquid electrolyte. No thermal runaway. Drop it, puncture it, crush it—it won't catch fire.

Manufacturable

Air-stable means standard manufacturing. No argon gloveboxes. No moisture-free rooms. Real factories.

Intellectual Property

Provisional patent filed

Full synthesis pathway documented. Composition and processing parameters protected. Ready for partnership or licensing discussions.