MSE PRO 100g NASICON Na3Zr2Si2PO12 Solid Electrolyte for Solid State Sodium Battery, 1-5 um

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SKU: BR0067913
Regular price $ 485.95

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MSE PRO 100g NASICON Na3Zr2Si2PO12 Solid Electrolyte for Solid State Sodium Battery, 1-5 um

Introduction

MSE PRO 100g NASICON Na₃Zr₂Si₂PO₁₂ Solid Electrolyte is a high-performance ceramic powder designed for solid-state sodium battery research and advanced electrochemical applications. Featuring a well-defined NASICON crystal structure, this material delivers high ionic conductivity and stable electrochemical performance. The powder exhibits a uniform white appearance with controlled particle size distribution in the 1–5 μm range, making it ideal for pellet fabrication, sintering studies, and solid electrolyte development.

This material is widely used in solid-state sodium-ion batteries, ceramic electrolyte fabrication, and electrochemical research, providing a reliable platform for next-generation energy storage development. 

Key Features

  • High ionic conductivity (~1.16 mS/cm at 25°C) for efficient sodium-ion transport
  • NASICON crystal structure for stable electrochemical performance
  • Controlled particle size distribution (1–5 μm range, D50 ≈ 2 μm)
  • Uniform white powder with no visible impurities
  • Suitable for sintering into dense ceramic electrolyte pellets
  • Air-stable material with recommended dry storage for optimal performance

Specifications

Parameter Specification
Product Name MSE PRO 100g NASICON Na₃Zr₂Si₂PO₁₂ Solid Electrolyte
Chemical Formula Na₃Zr₂Si₂PO₁₂
Structure NASICON
Appearance White powder, uniform, no foreign matter
Particle Size Range 1–5 μm
D10 0.634 μm
D50 2.010 μm
D90 9.422 μm
Ionic Conductivity ~1.16 mS/cm (25°C, sintered pellet)
Test Method (Particle Size) Laser diffraction with ultrasonic dispersion
Test Method (Conductivity) Electrochemical workstation (EIS, 10 MHz–1 Hz)
Stability Relatively stable in air; moisture may affect performance
Storage Store sealed in dry, cool conditions; avoid moisture and heat
Shelf Life ~6 months under proper storage conditions



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