Sodium Vanadium Phosphate (NVP) Cathode Powder | NASICON-type Na3V2(PO4)3 for Sodium-ion Battery Research

Price range: $280.00 through $500.00

Sodium Vanadium Phosphate (Na3V2(PO4)3), commonly known as NVP, is an advanced cathode material specifically designed for sodium-ion batteries. With its exceptional electrochemical properties, NVP is engineered to deliver outstanding performance across a variety of battery applications, making it an ideal choice for both research and industrial use. Its unique composition not only enhances energy storage capabilities but also ensures long-term stability and safety, positioning it as a leading material in the evolving landscape of energy solutions.

Description

Sodium Vanadium Phosphate (NVP) Cathode Powder

Na₃V₂(PO₄)₃ | High-Rate NASICON-Structured Material for Sodium-Ion Batteries

Product Overview

Sodium Vanadium Phosphate (Na₃V₂(PO₄)₃), commonly known as NVP, is a premium NASICON-type cathode material characterized by its monoclinic crystal structure and 3D ionic diffusion channels. This material is engineered for applications requiring high rate capability and exceptional thermal stability. It ensures long-term safety and minimal capacity decay, making it a leading choice for both industrial energy storage and advanced battery research.

Chemical & Physical Properties

Property Item Unit Specification
Sodium (Na) Content % 15.1 ± 0.8
Vanadium (V) Content % 22.1 ± 1.0
Phosphorus (P) Content % 20.4 ± 1.0
Carbon (C) Content % 3.0 ± 0.5
Moisture Content ppm < 1000
pH Value 9.0 – 11.0
Particle Size D10 μm ≥ 0.4
Particle Size D50 μm 2.0 ± 1
Particle Size D90 μm ≤ 15.0
Bulk Density g/cm³ ≥ 0.4
Tap Density g/cm³ ≥ 0.7
Compaction Density g/cm³ 1.8 – 2.1
Specific Surface Area (BET) m²/g 25 ± 2
Crystal Structure Monoclinic (NASICON)
Electrical Conductivity S/cm ≥ 1.0 × 10⁻³

Core Features & Advantages

NASICON Structure

Open 3D framework for rapid Na+ diffusion, providing exceptional high-rate capability and power density.

Long-Term Stability

Rigid monoclinic lattice structure minimizes strain, resulting in superior capacity retention over thousands of cycles.

Advanced Conductivity

Optimized carbon coating ensures electrical conductivity ≥ 1.0 × 10⁻³ S/cm for enhanced electrochemical performance.

Application Scope

  • Next-Gen SIB Research: Ideal for academic studies and high-rate battery prototypes.
  • Renewable Storage: Grid balancing for solar/wind energy infrastructure.
  • Electric Mobility: High-power batteries for e-bikes, EVs, and drones.
  • Electronics: Fast-charging solutions for portable high-drain devices.

Packaging & Handling

Secure Packaging: Product is vacuum-sealed in aluminum-plastic containers to ensure no moisture ingress or leakage during transit.

Technical Validation: Full SEM, XRD, and EDS reports are available upon request for quality assurance.

Safety Compliance: Environmentally friendly material free from harmful heavy metals, supporting sustainable SIB development.

ADVANCE YOUR NVP PROJECTS

Contact our technical team for formal quotations or custom carbon-coating adjustments.


CONTACT US: SUPPORT@ATOMFAIR.COM

Additional information

weight

200g, 1000g