A New Era of Battery Innovation

Next-generation lithium–silicon–sulfur chemistry unlocking safer, lighter, more sustainable EV performance.

350
Wh/kg
Energy Density
<15
Minutes
Fast Charge
1000+
Cycles
Lifespan
50%
Lower
Carbon Impact

Reinventing Battery Chemistry from the Ground Up

Our breakthrough Li–Si–S architecture dramatically increases energy density while reducing reliance on scarce materials, enabling safer, lighter, and more sustainable EV batteries.

High Energy Density

Up to 350 Wh/kg with next-generation silicon–sulfur reactions.

Fast-Charge Ready

Optimized ion pathways enable rapid charging with reduced thermal stress.

Safer by Design

Intrinsically stable chemistry reducing risk of thermal runaway.

Sustainable Materials

Reduced dependence on heavy metals and mining-intensive processes.

Extended Cycle Life

Advanced electrode stabilization ensures reliable performance over 1,000+ charge cycles.

Wide Temperature Range

Optimized electrolyte formulation maintains performance in extreme climates.

Our Technology in 60 Seconds

Three breakthrough innovations that power the future of electric mobility

Silicon Anode Breakthrough

Our proprietary silicon anode architecture addresses the fundamental challenge of volume expansion during lithiation. Through advanced nanostructuring and protective coating layers, we enable silicon to expand and contract safely across thousands of charge cycles. This breakthrough unlocks up to 10x the theoretical capacity of conventional graphite anodes, dramatically increasing energy density while maintaining structural integrity and long-term stability.

Sulfur-Rich Cathode

Our sulfur-based cathode leverages the high theoretical capacity of sulfur (1,675 mAh/g) while solving the notorious polysulfide dissolution problem. Through innovative carbon-sulfur composite architectures and advanced electrolyte formulations, we trap polysulfides within the cathode structure, preventing capacity fade and enabling stable long-term cycling. This approach delivers exceptional energy density with abundant, low-cost materials.

Production-Line Ready Design

Engineered for seamless integration with existing Li-ion production lines, reducing adaptation costs while supporting standard coating, calendaring, assembly, and formation processes for rapid industrial scalability. Our cell architecture uses familiar form factors and manufacturing techniques, enabling battery manufacturers to adopt our technology with minimal capital investment and accelerated time-to-market.

Designed for Real-World EV Demands

Performance metrics that matter for electric mobility

350 Wh/kg

Energy Density (target) - Superior energy storage for extended range

1,000+ Cycles

Cycle Life - Long-lasting performance for years of reliable operation

<15 Minutes

Fast Charge (target) - Rapid charging for minimal downtime

Low Risk

Thermal-Runaway Architecture - Enhanced safety through stable chemistry

Built for a Cleaner Future

Low-impact materials, reduced mining intensity, high recyclability, and dramatically lower lifecycle emissions.

Reduced Heavy-Metal Dependency

Minimizing cobalt and nickel usage while maintaining superior performance and safety standards.

Lower Carbon Footprint

Significantly reduced lifecycle emissions from material extraction through end-of-life recycling.

Enhanced Recyclability

Designed for efficient material recovery and circular economy integration at end of life.

Eco-Optimized Supply Chain

Streamlined sourcing and manufacturing processes reducing environmental impact across the value chain.

Range vs. Chemistry

Interactive comparison of battery chemistries

Range
600 km
Wh/kg
350
Pack Weight
Light
Fast Charge
<15 min
LFP NMC Li-Si-S

Projected Performance

Comprehensive performance metrics across key dimensions

Energy Density 95%
Cycle Stability 88%
Thermal Safety 92%
Sustainability Index 90%
Cost Efficiency 85%

Built for the Next Generation of Electric Mobility

Versatile chemistry designed for diverse applications

Passenger EVs

Extended range and faster charging for everyday electric vehicles

Light Commercial Vehicles

Reliable power for delivery fleets and urban logistics

High-Performance Mobility

Superior power-to-weight ratio for premium and sports EVs

Partnering to Accelerate EV Innovation

We collaborate with OEMs, suppliers, and research institutions to bring next-generation battery technology to market.

Become a Partner

Frequently Asked Questions

Common questions about our technology

Is the battery chemistry commercially available? +
Currently under validation and pilot-scale development. We are working closely with partners to bring this technology to commercial production.
What improvements does silicon–sulfur offer? +
Higher energy density, safer operation, and lower environmental footprint compared to traditional lithium-ion chemistries.
Can this chemistry be manufactured on existing Li-ion lines? +
Yes — engineered for drop-in compatibility with minimal adaptation. Our production-line ready design supports standard coating, calendaring, assembly, and formation processes.

Let's Build the Future of Batteries Together

Get in touch with our team

Ready to Collaborate?

Whether you're an OEM, supplier, investor, or research partner, we'd love to hear from you. Reach out through your preferred channel below.