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Home Cell Lab Lithium Nickel Cobalt Aluminium Oxide Powder [NCA, 12 µm D50, 500 g] – High-Energy Cathode Material for EV and Li-ion Batteries
Cell Lab NCA cathode powder (LiNi₀.₈Co₀.₁₅Al₀.₀₅O₂) – high-capacity, low-cobalt material for EV and lithium-ion batteries. Delivers ~195 mAh/g, D₅₀ 12 µm, high energy density and cycle stability for battery R&D and production.
Cell Lab NCA cathode powder (LiNi₀.₈Co₀.₁₅Al₀.₀₅O₂) – high-capacity, low-cobalt material for EV and lithium-ion batteries. Delivers ~195 mAh/g, D₅₀ 12 µm, high energy density and cycle stability for battery R&D and production.

Cell Lab Lithium Nickel Cobalt Aluminium Oxide Powder [NCA, 12 µm D50, 500 g] – High-Energy Cathode Material for EV and Li-ion Batteries

Cell Lab Lithium Nickel Cobalt Aluminium Oxide Powder [NCA, 12 µm D50, 500 g] – High-Energy Cathode Material for EV and Li-ion Batteries High-capacity, low-cobalt NCA cathode powder for advanced energy storage applications The Cell Lab Lithium Nickel Cobalt Aluminium...
Vendor: Cell Lab
SKU: CL0202
Product type: Battery Consumables
£299.00
£299.00
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Description
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Cell Lab Lithium Nickel Cobalt Aluminium Oxide Powder [NCA, 12 µm D50, 500 g] – High-Energy Cathode Material for EV and Li-ion Batteries

High-capacity, low-cobalt NCA cathode powder for advanced energy storage applications

The Cell Lab Lithium Nickel Cobalt Aluminium Oxide (NCA) powder is a high-performance cathode material engineered for next-generation lithium-ion batteries used in electric vehicles (EVs), energy storage systems, and portable devices. With the optimised composition LiNi₀.₈Co₀.₁₅Al₀.₀₅O₂, it offers high specific capacity (~195 mAh/g), long cycle life, and excellent thermal stability.

This material delivers superior energy density and efficiency, making it a preferred choice for researchers and manufacturers developing high-capacity coin cells, pouch cells, and EV-grade batteries.


Key Features

High Energy Density & Capacity
Delivers ~195 mAh/g at 0.1C (3.0–4.0 V vs Li), enabling energy densities up to 260 Wh/kg in full cell configurations.

Optimised Particle Size Distribution
D₅₀ = 12 ± 1.5 µm with narrow distribution for uniform slurry dispersion and consistent electrode coating.

Excellent Tap & Compaction Densities
TAP density ≈ 2.5 g/cm³ and compaction density ≈ 3.5 g/cm³ for high-loading electrodes and greater energy per unit volume.

Reduced Cobalt Content
Low-Co formulation enhances cost-efficiency and sustainability without compromising performance.

Proven Industrial Use
Used in Panasonic Tesla-type cells and widely adopted in EV battery research and pilot-line production.

Technical Specifications

Property Value
Appearance Black powder
CAS Number 193214-24-3
Molecular Formula LiNi₀.₈Co₀.₁₅Al₀.₀₅O₂
Formula Weight 183.54 g/mol
Density 4.45 g/cm³
D10 5 ± 2 µm
D50 12 ± 1.5 µm
D90 20 ± 4 µm
Purity 99%
TAP Density ~2.5 g/cm³
Compaction Density ~3.5 g/cm³
BET Specific Surface Area ~2 m²/g
pH 11.7
Capacity (0.1C, 3.0–4.0V) ~195 mAh/g
First Discharge Efficiency (0.1C) ~88%

Applications & Industries

  • Electric vehicles (EVs) and battery packs requiring high energy density

  • Lithium-ion coin cells and pouch cells for R&D testing

  • Medical and industrial electronics needing high cycle stability

  • Energy storage systems (ESS) and portable power modules

  • Advanced battery research laboratories and pilot production lines


FAQ

Q1: What is the advantage of NCA over NMC materials?
NCA offers higher energy density and rate capability due to its optimised Ni/Co/Al ratio, while maintaining thermal stability.

Q2: Can this material be used in coin cell tests?
Yes, it is ideal for both coin cell and pouch cell fabrication under standard R&D conditions.

Q3: Is it suitable for high-voltage operation?
Yes, it exhibits excellent performance within 3.0–4.3 V operating range.

Q4: Can I customise particle size or batch volume?
Custom morphology and bulk ordering options are available for institutional and industrial clients.

Q5: Is this the same chemistry used in Tesla cells?
Yes, this NCA composition (LiNi₀.₈Co₀.₁₅Al₀.₀₅O₂) is commonly used in Panasonic cells for Tesla vehicles.

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    Returns Policy

    You may return most new, unopened items within 30 days of delivery for a full refund. We'll also pay the return shipping costs if the return is a result of our error (you received an incorrect or defective item, etc.).

    You should expect to receive your refund within four weeks of giving your package to the return shipper, however, in many cases you will receive a refund more quickly. This time period includes the transit time for us to receive your return from the shipper (5 to 10 business days), the time it takes us to process your return once we receive it (3 to 5 business days), and the time it takes your bank to process our refund request (5 to 10 business days).

    If you need to return an item, simply login to your account, view the order using the "Complete Orders" link under the My Account menu and click the Return Item(s) button. We'll notify you via e-mail of your refund once we've received and processed the returned item.

    Shipping

    We can ship to virtually any address in the world. Note that there are restrictions on some products, and some products cannot be shipped to international destinations.

    When you place an order, we will estimate shipping and delivery dates for you based on the availability of your items and the shipping options you choose. Depending on the shipping provider you choose, shipping date estimates may appear on the shipping quotes page.

    Please also note that the shipping rates for many items we sell are weight-based. The weight of any such item can be found on its detail page. To reflect the policies of the shipping companies we use, all weights will be rounded up to the next full pound.

    Cell Lab Ltd

    Cell Lab Ltd, 85 Great Portland Street First Floor, London, W1W 7L, United Kingdom

    Email: sales@celllab.co.uk

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    At Cell Lab, we empower scientific discovery by delivering high-precision instruments and ultra-pure materials to research institutions, battery innovators, and advanced material scientists.

    Our curated portfolio supports critical research across battery R&D, semiconductor development, and materials science—with trusted tools including glove boxes, planetary ball mills, vacuum-compatible pressing systems, sputtering targets, ceramic substrates, and more.

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