Product Overview
Battery-grade Ga-doped LLZO garnet oxide solid electrolyte powder.
Product Details
Ga‑LLZO (gallium‑doped lithium lanthanum zirconium oxide) is a battery‑grade, garnet‑structured solid electrolyte powder with composition Li6.4La3Zr2Ga0.2O12 and an assay >99%. The powder has a typical particle size (D50) of 5 µm and a surface area 2–6 m2/g. As an oxide garnet electrolyte, Ga‑LLZO offers high lithium‑ion conductivity (>0.1 mS·cm-1), good chemical and thermal stability, and compatibility with common battery manufacturing methods.
Key Product Data
Key Features
- Explicit battery-grade designation
- Ga-doped garnet-type oxide
- powder form
- suitable for ceramic electrolyte and lithium-metal battery research.
Application Areas
Solid state electrolyte material for all solid state lithium ion batteries. Gallium doped LLZO, with nominal composition Li6.4 Ga0.2La3Zr2O12 (Ga-doped LLZO), is used as a solid electrolyte material for Li-based batteries because of its high Lithium ionic conductivity and chemical stability with respect to lithium as well as its stability at elevated temperatures.
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Use a sealed, dry container and follow the supplier SDS/COA for storage and handling.
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This battery-grade garnet oxide powder requires storage in sealed, dry containers to prevent moisture absorption. It is compatible with common battery manufacturing methods and should be handled according to the supplier's safety data sheet and certificate of analysis.
- Storage Constraint: Store the powder in a sealed, dry container to avoid moisture contamination.
- Handling Requirement: Follow the supplier's SDS and COA for safe handling and processing conditions.
- Processing Compatibility: The powder is compatible with common battery manufacturing methods such as pressing and sintering.
What is the room-temperature ionic conductivity of battery-grade Ga-doped LLZO (Li6.4La3Zr2Ga0.2O12) powder?
The ionic conductivity exceeds 5×10⁻⁴ S/cm at room temperature, as stated in the product specifications. This high conductivity, combined with its >99% purity and sub-micron particle size (300–500 nm D50), makes it suitable for all-solid-state lithium battery research and ceramic electrolyte fabrication.
Is Ga-doped LLZO chemically stable when in contact with lithium metal anodes?
Yes. The product description explicitly states that Ga-doped LLZO offers chemical stability with respect to lithium as well as stability at elevated temperatures. This makes it a suitable solid electrolyte for lithium-metal battery research.
What storage and handling conditions are recommended for Ga-doped LLZO powder?
The powder should be stored in a sealed, dry container. The supplier's Safety Data Sheet (SDS) and Certificate of Analysis (COA) should be consulted for detailed storage and handling procedures to maintain its battery-grade quality.
Ga-doped LLZO (Li6.4La3Zr2Ga0.2O12) garnet oxide solid electrolyte powder, battery-grade with >99% purity and >5×10⁻⁴ S/cm ionic conductivity, offers high chemical stability against lithium metal and thermal stability, making it suitable for all-solid-state battery research. Requires sealed dry storage due to moisture sensitivity, and batch variability necessitates characterization per lot.
Positive
- High Ionic Conductivity: Achieves >5×10⁻⁴ S/cm at room temperature, enabling efficient lithium-ion transport in solid-state battery electrolytes.
- Chemical and Thermal Stability: Stable against lithium metal and at elevated temperatures, reducing side reactions and supporting safe operation in all-solid-state cells.
Trade-offs
- Moisture Sensitivity: Requires sealed, dry storage per supplier SDS/COA to avoid degradation from atmospheric moisture; handling must follow strict protocols.
- Batch Variability: Product may come from different stock or batches; actual delivered goods govern, so per-batch characterization is recommended for consistent performance.
Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.
To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.
Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).








