Ceramic Electrolytes Enabling the Battery Revolution

Revolutionize energy storage with Vitreous Forge's ceramic electrolytes, enabling solid-state batteries with 2x energy density, enhanced safety, and rapid charging capabilities. Our advanced materials are unlocking the potential for next-generation electric vehicles and grid-scale energy storage.

Explore Our Solutions
Abstract representation of ceramic electrolyte structure for solid-state batteries with energy density visualization

Unrivaled Advantages of Vitreous Forge Ceramic Electrolytes

Superior Ionic Conductivity

Achieve efficient ion transport with ionic conductivity exceeding 10^-3 S/cm at room temperature, ensuring rapid charge and discharge rates for high-performance applications.

Enhanced Safety & Thermal Stability

Eliminate the risks of thermal runaway and flammable liquid electrolytes. Our ceramics offer excellent thermal stability and a wide electrochemical stability window for safer, more robust batteries.

Higher Energy Density & Longer Range

Enable smaller, lighter battery packs with significantly higher energy density, providing electric vehicles with extended range and consumer electronics with prolonged operational life.

Mechanical Strength & Structural Support

Our solid ceramic electrolytes provide inherent mechanical strength, simplifying battery architecture and enhancing durability in demanding environments.

Optimized Chemical Compatibility

Designed for seamless integration with advanced electrode materials, including lithium metal anodes, ensuring stable long-term performance.

Precision-Engineered Electrolyte Material Systems

Illustration of LLZO garnet crystal structure

LLZO Garnet Ceramics

Specializing in Li7La3Zr2O12 (LLZO)-based garnets, offering exceptional lithium metal compatibility and high ionic conductivity crucial for next-generation batteries.

  • High Stability with Li Metal
  • Excellent Ionic Conductivity
  • Wide Electrochemical Window
Illustration of sulfide glass-ceramic molecular bonds

Sulfide Glass-Ceramics

Leveraging sulfide-based glass-ceramics known for their ultra-high ionic conductivity, enabling extremely fast charging and high-power applications.

  • Ultra-High Ionic Conductivity
  • Superior Power Density
  • Rapid Transport Kinetics
Illustration of a composite ceramic electrolyte with distinct phases

Custom Composite Electrolytes

Developing bespoke composite electrolytes that combine the best attributes of various ceramic phases, tailored for unique battery chemistries and operational demands.

  • Tailored Performance Profiles
  • Optimized Mechanical & Chemical Properties
  • Enhanced Interfacial Stability

Verifiable Performance: Data You Can Trust

Our solid-state ceramic electrolytes undergo rigorous testing, consistently demonstrating performance metrics that set new industry benchmarks. Through meticulous electrochemical analysis and long-term cycling studies, we provide transparent, robust data to validate our materials' capabilities.

  • High Ionic Conductivity: Confirmed >10^-3 S/cm at 25°C in target formulations.
  • Exceptional Cycling Stability: Maintaining >90% capacity retention over 1000 cycles with lithium metal.
  • Rapid Rate Capability: Enabling fast charge times crucial for EV applications.
  • Wide Temperature Performance: Stable operation across automotive grade temperature ranges (-30°C to 80°C).
Request Detailed Performance Reports
Stacked bar chart showing battery capacity retention over cycles and ionic conductivity data for ceramic electrolytes
Representative electrochemical performance data for Vitreous Forge ceramic electrolytes.

Scalable Manufacturing for Gigawatt-Hour Production

Vitreous Forge is not just about R&D; we are built for industrial scale. Our meticulously developed manufacturing processes ensure consistent quality and high-volume production capabilities, ready to support the next generation of battery innovation.

Precision Powder Synthesis

Advanced powder synthesis techniques deliver ultra-pure, uniform ceramic precursors crucial for consistent electrolyte properties, ensuring batch-to-batch repeatability and performance.

Automated Thin-Film Processing

Utilizing high-throughput tape casting and screen printing, we produce thin, defect-free electrolyte layers essential for high energy density and optimal battery stack design.

Quality-Controlled Sintering

Our optimized sintering protocols achieve dense, mechanically robust ceramic electrolytes with precise microstructures, maximized ionic conductivity, and exceptional reliability.

Automated assembly line manufacturing solid-state ceramic electrolyte sheets
Vitreous Forge's automated production infrastructure ensures scalable and consistent ceramic electrolyte manufacturing.

Driving Innovation Across Critical Markets

Our solid-state battery materials are engineered to meet the stringent demands of diverse, critical applications where reliability and performance are paramount.

Stylized electric vehicle battery pack with ceramic layers

Electric Vehicles (EVs)

Enabling longer ranges, faster charging, and superior safety for the next generation of electric cars, trucks, and buses.

Large-scale energy storage system connected to a smart grid network

Grid-Scale Energy Storage

Providing robust, long-duration storage solutions for renewable energy integration and grid stabilization, enhancing energy security.

Stylized representation of a consumer electronics device powered by a compact battery

High-Performance Electronics

Enabling compact, safer, and longer-lasting batteries for a new generation of portable consumer electronics and wearables.

Accelerate Your Battery Development with Vitreous Forge

Partner with Vitreous Forge to integrate cutting-edge ceramic electrolyte technology into your next-generation battery designs. We offer comprehensive support from custom material development to scalable manufacturing solutions.

  • Collaborative R&D Programs: Tailored research and development to meet your specific performance objectives.
  • Custom Electrolyte Formulations: Engineering unique material compositions for specialized battery chemistries.
  • Advanced Characterization & Testing: In-depth material analysis and electrochemical performance validation.
  • Seamless Scale-Up Support: Guiding your project from laboratory prototypes to full-scale commercial production.
Contact Our Experts
Engineers collaborating on a solid-state battery design using advanced ceramic materials
Vitreous Forge: Your strategic partner in next-generation battery innovation.