Li-Rich-025 O3-NaLi₀.₂Mn₀.₈O₂ High-Capacity Lithium-Rich Cathode for Sodium-Ion Batteries

PRODUCT PARAMETERS

Enhance energy density with Li-Rich-025 (O3-NaLi₀.₂Mn₀.₈O₂). This Li-rich layered cathode offers high capacity and voltage performance, ideal for advanced, high-energy-density sodium-ion battery systems.
Description
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Description

Overview of Li-Rich-025 O3-NaLi₀.₂Mn₀.₈O₂ Lithium-Rich Cathode

The Li-Rich-025 (O3-NaLi₀.₂Mn₀.₈O₂) is a state-of-the-art Li-rich layered cathode material developed to meet the demand for higher energy density in sodium-ion batteries. Utilizing an O3-type structure, this material leverages lithium-rich chemistry to deliver superior capacity and stable high-voltage performance. Detailed structural characterization, including SXRD and NPD data, is visualized in image_bcf8bf.png.

Li-Rich-025 O3-NaLi₀.₂Mn₀.₈O₂ Lithium-Rich Cathode

Features of Li-Rich-025 O3-NaLi₀.₂Mn₀.₈O₂ Lithium-Rich Cathode

  • Li-Rich Layered System: Engineered for high capacity and high-voltage stability, making it an excellent match for high-energy-density power applications.
  • O3-Type Structure: Provides a robust, highly ordered layered architecture for efficient ion transport.
  • Advanced Structural Integrity: Microscopy analysis in Li-Rich-025-1.webp and Li-Rich-025-2.webp demonstrates the material’s stable lattice framework during electrochemical cycling.
  • Performance Reliability: Optimized for stable energy delivery across a wide voltage window.

Specifications Table of Li-Rich-025 O3-NaLi₀.₂Mn₀.₈O₂ Lithium-Rich Cathode

ParameterSpecifications
Chemical FormulaO3-NaLi₀.₂Mn₀.₈O₂
Material SeriesLi-Rich-025
Crystal PhaseO3-Type
Voltage Window2.0 – 4.5 V
Initial Specific Capacity200 mAh/g
Cycling Stability88% retention after 100 cycles
Rate Performance80% capacity retention at 1C

Applications of Li-Rich-025 O3-NaLi₀.₂Mn₀.₈O₂ Lithium-Rich Cathode

  • High-Energy-Density EVs: Ideal for battery systems requiring maximum power and range.
  • Grid-Scale Energy Storage: Suitable for high-capacity stationary storage solutions.
  • Advanced Portable Power: A premium choice for devices needing sustained energy output.
  • R&D Innovation: A benchmark material for studying high-capacity lithium-rich systems in sodium-ion battery research.

Package of Li-Rich-025 O3-NaLi₀.₂Mn₀.₈O₂ Lithium-Rich Cathode

We prioritize secure and clean handling for all deliveries:

  • Small Orders: Vacuum-sealed, moisture-proof aluminum foil bags (1kg, 5kg).
  • Bulk Orders: Industrial-grade, moisture-resistant fiber drums (25kg).
  • Logistics: All products are handled in controlled environments to maintain material purity.

Company Profile

Luoyang Tongrun Nano Technology Co., Ltd. (TRUNNANO) is a global supplier and manufacturer of high-performance battery materials. We specialize in lithium-ion, sodium-ion, and other advanced battery materials, serving 3C electronics, power batteries, and energy storage systems.

Our products include nano cobalt oxide, nano manganese oxide, silicon-carbon anode materials, hard carbon, NFPP, alumina, boron nitride, and more. All are produced under strict quality control, supported by our in-house lab and professional technical team.

If you are looking for reliable battery materials, feel free to contact us or send an inquiry.

Payment Methods

L/C, T/T, Western Union, Paypal, Credit Card, etc.

Shipment

By sea, by air, or by express upon payment receipt.

5 FAQs of Li-Rich-025 O3-NaLi₀.₂Mn₀.₈O₂ Lithium-Rich Cathode

1. What defines the Li-Rich-025 as a “high-capacity” system?

It utilizes a Li-rich layered chemistry that enables higher discharge capacity compared to conventional manganese-based cathodes.

2. How does the O3-type structure improve performance?

The O3-type layered structure is well-suited for high-voltage operation, allowing for better structural stability while maintaining high capacity.

3. Is this material suitable for 1C high-rate discharge?

Yes, it maintains 80% capacity retention at 1C, confirming its capability for rapid energy delivery.

4. How can I verify the material’s stability?

Structural stability is confirmed by the SXRD/NPD analysis and the high-resolution microscopy imaging provided

5. What is the recommended storage method?

The material should be stored in a cool, dry place within a moisture-controlled environment to ensure its electrochemical properties are preserved over time.

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