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Lithium Aluminum Titanium Phosphate LATP Nasicon Oxide Solid Ceramic Electrolyte Powder

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GUANGDONG XWELL TECHNOLOGY CO., LTD.
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Country/Region:china
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Lithium Aluminum Titanium Phosphate LATP Nasicon Oxide Solid Ceramic Electrolyte Powder

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Brand Name :XWELL
Model Number :Li₁.₅Al₀.₃Ti₁.₇(PO₄)₃
Certification :CE
Place of Origin :CHINA
MOQ :100g
Payment Terms :L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Ability :1 t/month
Delivery Time :5-7 days
Packaging Details :Plastic package
Model :Li₁.₅Al₀.₃Ti₁.₇(PO₄)₃
Particle Size​ :300 nm – 5 μm (multiple grades)
Purity​ :≥99.9%
​​Ionic Conductivity​ :2–5×10⁻⁴ S/cm (25°C)
Packaging​ :10 g, 50 g, 100 g/bottle
​​Li Content​ :41.3 wt% (theoretical)
Price :1-1000USD/Negotiable
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Lithium Aluminum Titanium Phosphate LATP NASICON Type Oxide Solid Electrolyte Ceramic Powder Lithium Ion Battery

Product Overview​

Li₁.₅Al₀.₃Ti₁.₇(PO₄)₃ (LATP, Model: LIC-316) is a pioneering NASICON-type solid electrolyte with demonstrated commercial viability. Featuring exceptional air/water stability and room-temperature ionic conductivity (2–5×10⁻⁴ S/cm), it enables safer and more efficient solid-state battery designs compared to sulfide/oxide alternatives.

Key Specifications​

​Property​ ​Specification​
​Chemical Formula​ Li₁.₅Al₀.₃Ti₁.₇(PO₄)₃
​Particle Size​ 300 nm – 5 μm (multiple grades)
​Purity​ ≥99.9%
​Ionic Conductivity​ 2–5×10⁻⁴ S/cm (25°C)
​Packaging​ 10 g, 50 g, 100 g/bottle
​Li Content​ 41.3 wt% (theoretical)

Note: SEM image confirms irregular particle morphology (see scale bar: 10.0 μm)

​Material Advantages​

  1. ​Industrial Readiness​

    • First commercially deployed solid electrolyte (2018–present)
    • Water/air stability eliminates glovebox requirements for processing
  2. ​Versatile Applications​

    • ​Separator Coating​​: Enhances liquid electrolyte compatibility
    • ​Composite Electrolytes​​: Hybrid organic-inorganic membranes
    • ​Li-Metal Anode Modification​​: Suppresses dendrites via ion-redistribution
  3. ​Safety & Performance​

    • Zero flammable components vs. liquid electrolytes
    • Wide electrochemical window (>4.5 V vs. Li⁺/Li)
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