Zr-023 P2-Na₀.₈Mn₀.₆Ni₀.₂Zr₀.₁Mg₀.₁O₂ High-Stability Sodium-Ion Cathode Material

PRODUCT PARAMETERS

Enhance sodium-ion battery performance with Zr-023. Our Zr/Mg co-doped P2-layered cathode stabilizes structure, suppresses Jahn-Teller distortion, and offers superior cycling life and thermal stability.
Description
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Description

Overview of Zr-023 P2-Na₀.₈Mn₀.₆Ni₀.₂Zr₀.₁Mg₀.₁O₂ Cathode Material

The Zr-023 (P2-Na₀.₈Mn₀.₆Ni₀.₂Zr₀.₁Mg₀.₁O₂) is a high-performance cathode material engineered for advanced sodium-ion batteries. By utilizing a precise Zr and Mg co-doping strategy, this material effectively stabilizes the layered structure and suppresses harmful Jahn-Teller distortions. As shown in the comprehensive characterization data in image_bc171f.png, Zr-023 exhibits excellent electrochemical reversibility and structural integrity.

Zr-023 P2-Na₀.₈Mn₀.₆Ni₀.₂Zr₀.₁Mg₀.₁O₂ Cathode Material

Features of Zr-023 P2-Na₀.₈Mn₀.₆Ni₀.₂Zr₀.₁Mg₀.₁O₂ Cathode Material

  • Zr/Mg Co-doping: Optimizes the crystal lattice to stabilize the layered structure and inhibit Jahn-Teller distortion.
  • Enhanced Thermal Stability: Demonstrated robustness in high-temperature environments, ensuring safety and reliability.
  • Superior Cycle Life: Engineered to maintain high capacity retention even after extended charge-discharge cycles.
  • P2-Type Layered Architecture: Facilitates efficient Na⁺ ion transport, leading to high discharge capacity and rate capability.
  • High Electrochemical Performance: Validated performance across various voltage windows and C-rates.

Specifications Table of Zr-023 P2-Na₀.₈Mn₀.₆Ni₀.₂Zr₀.₁Mg₀.₁O₂ Cathode Material

ParameterSpecifications
Chemical FormulaP2-Na₀.₈Mn₀.₆Ni₀.₂Zr₀.₁Mg₀.₁O₂
Material SeriesZr-023
Crystal PhaseP2-Type
Voltage Window2.0 – 4.0 V
Specific Capacity145 mAh/g
Cycling Stability92% retention after 100 cycles
Rate Performance80% capacity retention at 1C

Applications of Zr-023 P2-Na₀.₈Mn₀.₆Ni₀.₂Zr₀.₁Mg₀.₁O₂ Cathode Material

  • Grid-Scale Energy Storage: Reliable performance for long-duration stationary energy storage systems.
  • Electric Mobility: Suitable for high-safety and long-cycle life requirements in electric vehicle battery packs.
  • Industrial Backup Power: Provides consistent energy density for critical infrastructure.
  • R&D and Pilot Production: A benchmark material for advancing P2-type sodium-ion technology.

Package of Zr-023 P2-Na₀.₈Mn₀.₆Ni₀.₂Zr₀.₁Mg₀.₁O₂ Cathode Material

We prioritize secure and standardized packaging to maintain material quality:

  • Standard Packaging: Vacuum-sealed, moisture-proof aluminum foil bags (Available in 1kg and 5kg sizes).
  • Bulk Packaging: Industrial-grade fiber drums (25kg/drum) for large-scale production requirements.
  • Environmental Control: Materials are packed under dry/inert conditions to ensure optimal surface chemistry stability.

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 Zr-023 P2-Na₀.₈Mn₀.₆Ni₀.₂Zr₀.₁Mg₀.₁O₂ Cathode Material

1. What is the benefit of the Zr/Mg co-doping in Zr-023?

Co-doping with Zirconium and Magnesium helps stabilize the P2-layered crystal structure and effectively suppresses Jahn-Teller distortions, which are common causes of structural degradation in Mn-based cathodes.

2. How does Zr-023 perform at high temperatures?

Zr-023 shows improved thermal stability compared to non-doped samples, making it safer and more durable in high-temperature operating conditions, such as 55°C.

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

Yes, it demonstrates 80% capacity retention at 1C, confirming its capability to handle rapid discharge requirements.

4. How should Zr-023 be stored?

To prevent surface side reactions with moisture, the material should be stored in a cool, dry environment, preferably in a humidity-controlled area or an inert gas glovebox.

5. Can I request testing data for this material?

Yes, please contact our technical sales team to receive detailed XRD, SEM, and electrochemical test reports

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