LGPS powder supplied by Stanford Optics features high purity and consistent particle size. Its thermal stability and chemical compatibility with lithium metal anodes make it a strong candidate for next-generation solid-state lithium-ion batteries.
Lithium Germanium Phosphorus Sulfide (LGPS) is a solid-state electrolyte material recognized for its high lithium-ion conductivity at room temperature. It has drawn significant interest for its role in advancing battery technology beyond traditional liquid electrolytes.
Solid-State Lithium-Ion Batteries
LGPS serves as the electrolyte facilitating lithium-ion movement between electrodes, enabling safer, longer-lasting battery designs.
Energy Storage Systems
Used in grid storage and renewable energy applications where cycle life and safety are critical.
Portable Electronics
Power source material for smartphones, laptops, and tablets with enhanced safety profiles.
Electric Vehicles (EVs)
Supports development of solid-state batteries offering higher energy density and improved safety for EV applications.
Aerospace and Aviation
Applied in batteries needing reliable performance under demanding conditions.
Wearable Devices
Suitable for compact, long-life power in smartwatches and fitness trackers.
Medical Devices
Used in implantable devices where stable and safe power delivery is essential.
Remote Sensors and IoT
Extends operational life for sensors in inaccessible locations.
LGPS powder is carefully packaged to preserve purity and prevent contamination during storage and shipment. Each batch undergoes strict quality control to ensure consistent performance in your battery research and manufacturing.
Chemical Formula |
Li10GeP2S12 |
Particle Size |
-325 mesh |
Form |
White powder |
Purity |
99% |
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