SodioX Battery: Advanced Energy
Storage for a Sustainable Future

SodioX Battery: Advanced Energy Storage for a Sustainable Future

Battery Chemistry

exo

SodioX leverages Sodium-Ion (Na-ion) technology, enhanced with proprietary cathode materials to improve energy density and extend cycle life. The use of advanced electrolyte formulations ensures stability and performance across various applications.

Energy Density:

SodioX targets an energy density of 200 Wh/kg (approximately 500 Wh/L) by 2025, with the potential to reach 400 Wh/kg (approximately 1000 Wh/L) by 2030 through ongoing research into advanced anode materials, including carbon-based composites and metal oxides

Cycle Life

Designed for durability, SodioX delivers up to 7,000 cycles at 80% Depth of Discharge (DoD), utilizing advanced separator technology to maintain structural integrity and prevent dendrite formation, making it ideal for long-duration energy storage.

Charging Speed

Capable of charging at a rate of 3C, SodioX can reach a full charge in under 30 minutes. This rapid charging is facilitated by high-rate anode materials and optimized ion transport mechanisms, reducing downtime and enhancing efficiency.

Operating Temperature Range:

Uses 30% less energy compared to conventional methods, lowering operational costs and reducing the overall carbon footprint of lithium extraction.

Safety Features:

Equipped with robust safety mechanisms, including advanced Battery Management Systems (BMS) that provide real-time monitoring, overcharge and short-circuit protection, and thermal runaway prevention. The cell design also includes reinforced casing to withstand external stress and ensure stability in large-scale energy storage systems.

Applications:

SodioX is ideal for grid storage, large-scale renewable energy integration, and low-cost electric vehicles. Its technical robustness and versatility make it a reliable solution for diverse energy storage needs, offering both performance and safety.

Technical Highlights

Advanced Cathode Materials:

Enhanced for improved energy density and cycle life.

Advanced Cathode Materials:

Enhanced for improved energy density and cycle life.

Advanced Cathode Materials:

Enhanced for improved energy density and cycle life.

Advanced Cathode Materials:

Enhanced for improved energy density and cycle life.

Advanced Cathode Materials:

Enhanced for improved energy density and cycle life.