LATP Oxide Solid-State Electrolyte Powder 5μm

$290.00

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LATP 99.9% NASICON oxide electrolyte powder, 5.0 ± 0.5 µm D50, 100 g, with ≥1.3 mS/cm ionic conductivity at 27 °C for ASSB research. Order now.

LATP (Li1.5Al0.5Ti1.5(PO4)3) Oxide Solid-State Electrolyte Powder,5 Um

Oxide Solid-State Electrolytes

Product Overview

LATP (Li1.5Al0.5Ti1.5(PO4)3) is an air-stable, NASICON-structured oxide solid-state electrolyte for all-solid-state lithium battery (ASSB) research. High phase purity , low moisture, white powder Three grades: 5 µm / 600 nm / 300 nm — custom on request

Product Details

LATP (Li1.5Al0.5Ti1.5(PO4)3) Oxide Solid-State Electrolyte Powder is an air-stable, NASICON-structured oxide solid-state electrolyte for all-solid-state lithium battery (ASSB) research. Its 3D NASICON framework provides fast Li⁺ migration pathways, delivering an ionic conductivity of ≥1.3 mS/cm (10⁻³ S/cm) at 27 °C after sintering. Unlike sulfide electrolytes, LATP is stable in air and easy to handle, with a wide electrochemical window and good compatibility with NCM and LCO cathodes. It is available as a white powder in three particle-size grades — 5 µm, 600 nm, and 300 nm — so researchers can match particle size to ceramic pellets, composite films, or high-loading composite electrodes.

Key Product Data

Parameter Detail
Chemical formula Li1.5Al0.5Ti1.5(PO4)3
Particle size 5.0 ± 0.5 µm D50
Specification 100g
Purity 99.9%
Ionic conductivity ≥1.3 mS/cm at 27 °C
Theoretical density 2.94 g/cm³
Moisture <2000 ppm
pH <8.50
CAS number 120479-61-0

Key Features

  • Air-stable NASICON oxide chemistry — no glovebox required for basic handling, unlike sulfides
  • High ionic conductivity ≥1.3 mS/cm (10⁻³ S/cm) at 27 °C after sintering
  • 3D Li⁺ migration pathways with a wide electrochemical window
  • Compatible with NCM and LCO cathodes and polymer-ceramic composite systems
  • Three particle-size grades (5 µm / 600 nm / 300 nm) for pellets, films, and composites
  • High phase purity with low moisture and consistent D50

Application Areas

Ceramic separator / electrolyte pellets for all-solid-state lithium batteries (ASSB) Polymer-ceramic composite electrolyte films High-loading composite cathodes (with NCM, LCO) Nanocomposite electrolyte films (sub-micron and nano grades) University, research-institute, and industrial solid-state battery R&D

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Packaging & Storage

Standard pack sizes 100 g ; custom quantities available on request Store sealed in a cool, dry environment, protected from moisture Reseal promptly after use; 1-year shelf life when sealed

Products may come from different stock or batches; actual delivered goods shall govern.
TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official institutional quotations.
EMAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

This powder requires sintering at elevated temperatures to achieve its specified ionic conductivity. Moisture exposure must be limited to below 2000 ppm to maintain electrochemical performance and storage stability.

  • Sintering Requirement: The powder must be sintered to activate the NASICON framework and achieve Li⁺ conductivity.
  • Moisture Sensitivity: Store sealed in a cool, dry environment and reseal promptly after use to prevent moisture uptake.
  • Particle Size Selection: Choose the appropriate particle size grade (5 µm, 600 nm, or 300 nm) based on the target application such as ceramic pellets or composite films.
  • Cathode Compatibility: The electrolyte is compatible with NCM and LCO cathodes in composite electrode formulations.
  • Handling Environment: Basic handling does not require a glovebox due to air stability, but a dry environment is recommended for long-term storage.

What is the ionic conductivity of LATP (Li1.5Al0.5Ti1.5(PO4)3) powder after sintering, and how does it compare to sulfide electrolytes?

After sintering, LATP powder delivers an ionic conductivity of ≥1.3 mS/cm (10⁻³ S/cm) at 27 °C. Unlike sulfide electrolytes, LATP is stable in air and easy to handle, offering a wide electrochemical window and compatibility with NCM and LCO cathodes.

Is LATP solid-state electrolyte compatible with high-voltage cathodes like NCM and LCO?

Yes, LATP features a wide electrochemical window and good compatibility with NCM and LCO cathodes, making it suitable for use in ceramic separator pellets, composite films, and high-loading composite cathodes for all-solid-state batteries.

Does LATP powder require a glovebox for handling, or can it be processed in ambient air?

LATP is an air-stable NASICON oxide and does not require a glovebox for basic handling, unlike sulfide electrolytes. For storage, keep it sealed in a cool, dry environment protected from moisture to maintain its low moisture content (<2000 ppm) and 1-year shelf life.

LATP (Li1.5Al0.5Ti1.5(PO4)3) is an air-stable NASICON-structured oxide solid-state electrolyte powder delivering ≥1.3 mS/cm ionic conductivity at 27 °C after sintering, available in three particle-size grades (5 µm, 600 nm, 300 nm) to accommodate ceramic pellets, composite films, or high-loading composite electrodes for all-solid-state lithium battery research.

Positive

  • Air-stable NASICON oxide chemistry: Unlike sulfide electrolytes, LATP is stable in air and does not require a glovebox for basic handling, simplifying laboratory processing and reducing infrastructure demands.
  • High ionic conductivity after sintering: The 3D NASICON framework provides fast Li⁺ migration pathways, achieving an ionic conductivity of ≥1.3 mS/cm (10⁻³ S/cm) at 27 °C after sintering, enabling competitive performance in solid-state electrolyte research.

Trade-offs

  • Sintering required for conductivity: The stated ionic conductivity of ≥1.3 mS/cm is achieved only after sintering; the as-received powder requires a densification step, adding processing time and equipment requirements.
  • Moisture sensitivity during storage: Although air-stable, the powder must be stored sealed in a cool, dry environment with moisture below 2000 ppm, and the container must be resealed promptly after use to maintain a 1-year shelf life.

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).

Weight

5.0 ± 0.5 µm D50, 100g