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Home Cell Lab Manganese-Rich Li₁.₂Ni₀.₁₃Co₀.₁₃Mn₀.₅₄O₂ Powder – Cathode Material for Lithium-Ion Batteries
Cell Lab Manganese-Rich Li₁.₂Ni₀.₁₃Co₀.₁₃Mn₀.₅₄O₂ Powder delivers high energy density, long cycle life and low cobalt content for sustainable, high-capacity lithium-ion battery cathode applications.
Cell Lab Manganese-Rich Li₁.₂Ni₀.₁₃Co₀.₁₃Mn₀.₅₄O₂ Powder delivers high energy density, long cycle life and low cobalt content for sustainable, high-capacity lithium-ion battery cathode applications.

Cell Lab Manganese-Rich Li₁.₂Ni₀.₁₃Co₀.₁₃Mn₀.₅₄O₂ Powder – Cathode Material for Lithium-Ion Batteries

Cell Lab Manganese-Rich Li₁.₂Ni₀.₁₃Co₀.₁₃Mn₀.₅₄O₂ Powder [High-Energy Layered Oxide Cathode Material] High-capacity, cobalt-reduced cathode powder for next-generation lithium-ion batteries The Cell Lab Manganese-Rich Li₁.₂Ni₀.₁₃Co₀.₁₃Mn₀.₅₄O₂ Powder is a high-energy layered oxide cathode material designed for advanced lithium-ion cells. Combining high specific capacity,...
Vendor: Cell Lab
SKU: CL0064
Product type: Chemicals and Compounds
£259.00
£259.00
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Description
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Cell Lab Manganese-Rich Li₁.₂Ni₀.₁₃Co₀.₁₃Mn₀.₅₄O₂ Powder [High-Energy Layered Oxide Cathode Material]

High-capacity, cobalt-reduced cathode powder for next-generation lithium-ion batteries

The Cell Lab Manganese-Rich Li₁.₂Ni₀.₁₃Co₀.₁₃Mn₀.₅₄O₂ Powder is a high-energy layered oxide cathode material designed for advanced lithium-ion cells. Combining high specific capacity, long cycle life and improved cost efficiency through reduced cobalt use, this composition supports sustainable, high-performance energy-storage solutions.

Its stable layered structure and excellent thermal behaviour make it ideal for modern lithium-ion chemistries used in consumer electronics, electric mobility, and stationary energy-storage systems. With its environmentally friendly manganese-based formulation, this powder provides a powerful pathway toward efficient, scalable and eco-conscious battery design.


Key Features

  • High Energy Density – Delivers elevated specific capacity, enabling compact cells with extended runtime.

  • Extended Cycle Life – Maintains structural and electrochemical stability over prolonged cycling.

  • Reduced Cobalt Content – Lowers material cost while improving supply-chain sustainability.

  • Excellent Thermal and Chemical Stability – Ensures reliable performance under high-voltage operation.

  • Eco-Friendly Composition – Employs abundant, low-toxicity manganese chemistry for sustainable energy solutions.

Specifications:

SKU#

CL0064

Package 100 g/bottle
Particle Size Distribution

D10 (um) : 6.78

D50 (um) : 11.46

D90 (um) : 16.42

Specific Surface Area 2.15 m2/g
Tap Density 2.34 g/cm³
Carbon Content 1.45 ± 0.2 %
First Discharge Capacity 276 mAh/g( 2.0-4.8 V )
First Efficiency 91.6 %

Applications & Industries

  • Lithium-ion battery cathodes for consumer electronics

  • Electric-vehicle and hybrid-battery research

  • Energy-storage modules and grid-scale systems

  • Sustainable battery materials R&D

  • High-capacity cathode powder formulation studies


FAQ

Q1: What advantage does this manganese-rich composition offer over traditional NCM materials?
A1: It provides higher specific capacity and reduced cobalt dependency, lowering cost and enhancing sustainability.

Q2: Can this powder be used in high-voltage cells?
A2: Yes. It remains stable up to 4.8 V and supports high-energy configurations.

Q3: How does it perform in long-term cycling?
A3: The layered oxide structure maintains excellent capacity retention and low degradation over hundreds of cycles.

Q4: What binder systems are recommended?
A4: PVDF or water-based CMC/SBR binders are compatible for slurry preparation and coating.

Q5: Does it require pre-treatment before use?
A5: Vacuum drying at 120 °C for several hours is recommended to remove residual moisture before mixing with binder and solvent.

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Shipping & Return
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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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