Solid-State Electrolytes

Safe. Stable. Efficient. Future-Proof.

Solid-state electrolytes (SSEs) replace traditional liquid electrolytes with highly stable, non-flammable solid materials, eliminating fire risks, improving battery lifespan, and enhancing energy density.

Advanced solid-state electrolytes are designed to power the next generation of electric vehicles (EVs), energy storage systems (ESS), aerospace applications, and high-performance industrial batteries.

Key Advantages of Solid-State Electrolytes

Fireproof & Thermal Stability

Fireproof & Thermal Stability

Zero Risk of Thermal Runaway
  • No liquid components, eliminating electrolyte leakage and expansion issues.
  • Stable up to 180°C, ensuring high-temperature resistance.
  • Prevents dendrite formation, protecting against short circuits and capacity loss.
Higher Energy Density

Higher Energy Density

More Power, Less Space
  • Supports high-voltage operation (>5.1V), enabling greater energy storage capacity.
  • Faster ion transport and optimized conductivity for higher efficiency.
  • Lightweight and compact, making batteries more energy-dense.
Extended Battery Lifespan

Extended Battery Lifespan

Enhanced Stability Over Time
  • Long-term cycle life, maintaining capacity even after thousands of charge cycles.
  • Optimized electrolyte structure prevents degradation, ensuring superior durability.
  • Improved electrode-electrolyte interface, maintaining performance stability.
Eco-Friendly & Sustainable

Eco-Friendly & Sustainable

  • Free from toxic solvents, reducing environmental impact.
  • Fully recyclable components, designed for sustainable battery manufacturing.
  • Lower carbon footprint, supporting clean energy initiatives.

Advanced Solid-State Electrolyte Series

Each electrolyte formulation is tailored for specific applications, ensuring optimal performance across different industries.

EHT550A01

High-Safety, High-Temperature Electrolyte

  • Voltage stability: 5.1V
  • Thermal Stability: Up to 180°C
  • Ionic Conductivity (25°C): 8-10 mS/cm
  • Optimized for: LiFePO₄, LiCoO₂, Ni-rich cathode materials
  • Key Benefits: High-temperature resistance, excellent mechanical strength, improved electrode protection.

EWT540A01

Wide-Temperature, High-Safety Electrolyte

  • Voltage stability: 5.4V
  • Thermal Stability: Up to 150°C
  • Ionic Conductivity (25°C): 8-10 mS/cm
  • Optimized for: LiFePO₄, LiCoO₂, Ni-rich cathode materials
  • Key Benefits: Wide operating temperature (-30°C to 100°C), improved cycle stability, high ionic transference.

EHP560A01

High-Voltage, High-Safety Electrolyte

  • Voltage stability: 5.6V
  • Thermal Stability: Up to 150°C
  • Ionic Conductivity (25°C): 8-10 mS/cm
  • Optimized for: LiFePO₄, LiCoO₂, Ni-rich, Li-rich cathode materials
  • Key Benefits: Ultra-high voltage stability, uniform electrolyte interaction, enhanced durability.

PLS520A01

Solid-State Sodium-Ion Electrolyte

  • Voltage stability: 5.2V
  • Thermal Stability: Up to 150°C
  • Ionic Conductivity (25°C): 9-10.5 mS/cm
  • Optimized for: Polyanion-type, O3-type, P2-type cathode materials
  • Key Benefits: Designed for sodium-ion batteries, high Na+ conductivity, long-term stability.

How Solid-State Electrolytes Compare to Liquid Electrolytes

Feature Our Solid-State Electrolytes Traditional Liquid Electrolytes
Fire Risk None High
Operating Temperature -30°C to 180°C 0°C to 60°C
Energy Density Higher Lower
Cycle Life 6,000+ cycles 2,000-3,000 cycles
Dendrite Formation Prevents dendrites Risk of dendrite growth
Charging Speed Ultra-fast Moderate
Environmental Impact Non-toxic, recyclable Toxic, difficult to recycle

Note: Solid-state electrolytes ensure greater energy efficiency, enhanced safety, and extended lifespan, making them the ideal solution for next-gen EVs, ESS, and high-performance battery applications.

Download the Technical Datasheet for detailed specifications.

Frequently Asked Questions

What makes solid-state electrolytes safer than liquid electrolytes?

Unlike traditional lithium-ion batteries, solid-state electrolytes are completely non-flammable, eliminating the risk of fires and explosions.

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