ULPMAT

Sodium Iron Pyrophosphate Phosphate (NFPP)

Chemical Name:
Sodium Iron Pyrophosphate Phosphate (NFPP)
Formula:
Na₄Fe₃(PO₄)₂P₂O₇
Product No.:
11261508150800
CAS No.:
EINECS No.:
Form:
Powder
HazMat:
Product ID Formula Purity Dimension Inquiry
11261508150800PD001 Na₄Fe₃(PO₄)₂P₂O₇ 99% 1 - 3 μm Inquire
Product ID
11261508150800PD001
Formula
Na₄Fe₃(PO₄)₂P₂O₇
Purity
99%
Dimension
1 - 3 μm

Sodium Iron Pyrophosphate Phosphate (NFPP) Powder Overview

Sodium Ferric Pyrophosphate Phosphate (Na₄Fe₃(PO₄)₂P₂O₇, NFPP) is an advanced cathode material for sodium-ion battery systems. Featuring a stable mixed phosphate–pyrophosphate framework, NFPP offers excellent thermal stability, high structural integrity, and reliable sodium-ion storage performance.

Compared with conventional iron phosphate materials, NFPP combines the advantages of phosphate and pyrophosphate chemistries, delivering improved energy density, long cycle life, and enhanced safety. It is widely used in sodium-ion batteries, hybrid energy storage systems, and large-scale stationary energy storage applications.

We provide high-purity NFPP powders with customizable particle size, morphology, tap density, carbon coating, and conductivity enhancement to meet different battery manufacturing and performance requirements. Contact us to learn more about our customization solutions.

Product Highlights

  • Stable mixed phosphate–pyrophosphate crystal structure
  • Excellent thermal and electrochemical stability
  • Higher energy density than conventional iron phosphate materials
  • Long cycle life and outstanding safety performance
  • Fast sodium-ion transport capability
  • High purity and uniform particle size distribution
  • Carbon coating and conductivity enhancement available
  • Customizable electrochemical properties for different battery systems

Typical Material Characteristics

Property Typical Value
Chemical Formula Na₄Fe₃(PO₄)₂P₂O₇
Abbreviation NFPP
Appearance Gray to black powder
Crystal Structure Mixed phosphate–pyrophosphate framework
Main Redox Couple Fe²⁺ / Fe³⁺
Tap Density Customizable
Particle Size Customizable
Surface Modification Carbon coating / Conductivity enhancement available

Customization Options

To meet different battery process requirements, we support:

  • Particle size adjustment
  • Particle morphology control
  • Tap density optimization
  • Carbon coating modification
  • Conductivity enhancement
  • Customized sodium-to-iron ratio and crystal phase control

Applications of Sodium Ferric Pyrophosphate Powder

Sodium-Ion Battery Cathode Materials: Suitable for high-safety sodium-ion batteries with improved energy density and long cycle life.

Grid Energy Storage Systems: Applied in renewable energy storage, peak shaving, and load balancing systems.

Industrial and Stationary Storage Batteries: Used in backup power systems, telecom base stations, and distributed energy storage.

Hybrid Energy Storage Devices: Suitable for sodium-ion capacitors and hybrid battery systems requiring balanced power and energy performance.

FAQs

Q1: What is NFPP?
A1: Na₄Fe₃(PO₄)₂P₂O₇ is a mixed phosphate–pyrophosphate sodium-ion battery cathode material featuring a stable polyanion framework and multiple iron redox centers.

Q2: What is NFPP mainly used for?
A2: NFPP is mainly used in sodium-ion battery cathodes, large-scale energy storage, renewable energy systems, backup power, and hybrid capacitor-battery devices.

Q3: Can It be customized?
A3: Yes. We offer customized particle size, carbon coating, morphology, tap density, and conductivity enhancement according to specific battery design requirements.

Q4: What are the advantages of NFPP?
A: It offers excellent safety, stable crystal structure, long cycle life, and higher energy density than many conventional iron-based cathode materials.

Reports

Each batch includes:
Certificate of Analysis (COA)
Technical Data Sheet (TDS)
Material Safety Data Sheet (MSDS)
Size Inspection Report
Optional third-party testing reports

Why Choose Us?

Our NFPP materials are specifically developed for next-generation sodium-ion battery applications. With advanced synthesis technology, strict quality control, and flexible customization capability, we provide highly consistent products with excellent electrochemical performance.

We help customers optimize battery safety, cycle life, conductivity, and overall cost-effectiveness through tailored material solutions and reliable technical support.

Molecular Formula: Na₄Fe₃(PO₄)₂P₂O₇

Appearance: Gray black

Density: 3.3-3.5 g/cm3

Crystal Structure: Orthorhombic, space group Pn2₁a

Inner packaging: Vacuum-sealed bags or bottles to prevent contamination and moisture.

Outer packaging: Appropriate cartons or drums selected based on size and weight.

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