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High-ionic-conductivity halide electrolyte for next-generation all-solid-state battery research
The Cell Lab Lithium-Indium Chloride (Li₃InCl₆) is a halide-based solid-state electrolyte engineered for all-solid-state lithium battery (ASSLB) development. Featuring outstanding ionic conductivity and a broad electrochemical stability window, it offers superior interface compatibility with oxide cathodes such as LiCoO₂. Its excellent air stability and low electronic conductivity make it an ideal choice for laboratory studies on high-performance solid-state battery systems.
Excellent Ionic Conductivity: ≥ 1.5 mS/cm at 25 °C under 300 MPa pressure, ensuring rapid lithium-ion transport.
Wide Electrochemical Window: Operates reliably between 1.9 V and 4.2 V for high-voltage battery research.
Air-Stable Formulation: Supplied as a free-flowing white powder, easy to handle in open laboratory environments.
Superior Interface Compatibility: Stable contact with oxide cathodes (e.g., LiCoO₂) without interfacial coatings.
Research-Grade Material: High-purity electrolyte packed in 10 g bottles for precise laboratory and pilot-scale use.
| Parameter | Specification |
|---|---|
| Appearance | White powder |
| Theoretical Density | 2.56 g/cm³ |
| Ionic Conductivity (25 °C, 300 MPa) | ≥ 1.5 mS/cm |
| Electronic Conductivity | < 1 × 10⁻⁸ S/cm |
| Electrochemical Window (Theoretical) | 2.38 V – 4.3 V |
| Electrochemical Window (Measured) | 1.9 V – 4.2 V |
| Package Size | 10 g / bottle |
| Intended Use | Research only |
All-solid-state lithium battery (ASSLB) R&D
Oxide-based cathode interface optimisation
Halide and composite electrolyte formulation studies
Electrochemical performance testing and modelling
Academic and industrial battery research laboratories
Q1: What makes Li₃InCl₆ suitable for solid-state battery research?
Its high ionic conductivity and wide electrochemical window enable stable operation with high-voltage cathodes.
Q2: Can this electrolyte be handled in air?
Yes. Unlike many sulfide-based electrolytes, Li₃InCl₆ is air-stable and easy to handle without a glovebox.
Q3: What types of cathode materials are compatible?
It shows excellent interface compatibility with oxide cathodes such as LiCoO₂, NCM, and NCA.
Q4: Is it electrically insulating?
Yes. The electronic conductivity is < 1 × 10⁻⁸ S/cm, ensuring ionic-only transport behaviour.
Q5: How should it be stored?
Keep tightly sealed and stored in a dry, inert environment below 25 °C to maintain purity.
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