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PRODUCT PARAMETERS
Description
Overview of V-017 NaVO2 Cathode Material for High-Energy Density Sodium-Ion Batteries
The NaVO2 cathode material represents a breakthrough in V-based high-energy density systems for sodium-ion batteries (SIBs). Utilizing a sophisticated O3-type layered structure, this material is designed to deliver exceptional capacity and robust electrochemical performance. Its unique vanadium-based architecture enables high-voltage operation, making it an ideal choice for advanced energy storage solutions that require maximized energy density and reliable power output.

Features of V-017 NaVO2 Cathode Material for High-Energy Density Sodium-Ion Batteries
- High Energy Density: Optimized V-based chemistry specifically developed to push the boundaries of energy density in SIBs.
- O3-Type Layered Structure: Enhances structural stability and enables efficient sodium-ion transport.
- High-Voltage Operation: Engineered to maintain performance stability across a wider, higher-voltage operating range.
- Excellent Capacity Retention: Demonstrates reliable performance over extended cycling, ensuring long-term utility.
- Superior Electrochemical Performance: Balances high-capacity output with stable rate capability (1C) for demanding applications.


Specifications Table of V-017 NaVO2 Cathode Material for High-Energy Density Sodium-Ion Batteries
| Property | Value / Description |
| Material Name | NaVO2 |
| System | V-based High-Energy Density System |
| Crystal Structure | O3-Type |
| Voltage Window | 2.0 – 4.0 V |
| Operating Current | 180 mA/g |
| Cycle Life | 100 cycles @ 80% retention |
| Rate Performance | 1C @ 80% capacity |
| Primary Benefits | High voltage, high capacity, high energy density |
Applications of V-017 NaVO2 Cathode Material for High-Energy Density Sodium-Ion Batteries
- High-Energy Storage Systems: Optimized for large-scale energy storage requirements where density is critical.
- Advanced Battery R&D: A leading candidate for research into high-performance vanadium-based cathode chemistries.
- Portable High-Power Devices: Suitable for applications requiring compact, high-energy-density power sources.
- Grid Stabilization: Designed to support reliable performance in grid-scale energy storage modules.
Package of V-017 NaVO2 Cathode Material for High-Energy Density Sodium-Ion Batteries
To maintain the highest level of material integrity, NaVO2 is packaged in hermetically sealed, moisture-proof anti-static containers. We offer customizable packaging solutions ranging from laboratory-scale quantities (100g, 500g) to industrial-grade bulk supply (1kg, 5kg, and larger drums), all processed under inert atmosphere conditions to prevent atmospheric degradation.

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.
5FAQs of V-017 NaVO2 Cathode Material for High-Energy Density Sodium-Ion Batteries
- What is the key strength of the NaVO2 material?The primary advantage is its high energy density and high-voltage capability, attributed to its advanced V-based layered system.
- What is the recommended voltage range for this cathode?This material is engineered to perform optimally within the 2.0V to 4.0V range.
- How does the O3-type structure benefit the battery?The O3-type layered structure provides a stable framework for sodium-ion intercalation and de-intercalation, which is crucial for achieving high capacity and good cycle life.
- What handling precautions should be taken?As with high-performance cathode materials, it is recommended to store and handle NaVO2 in a dry, inert environment (e.g., an argon-filled glove box) to preserve its electrochemical properties.
- Is this material suitable for 1C high-rate applications?Yes, our NaVO2 material is designed to support 1C discharge rates while maintaining 80% capacity, making it versatile for various power demands.
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