
Manganese Oxide Nanopowder/Nanopowder (Mn2O3, 30-50nm, purity 99.5% )
₹1475.00
Manganese Oxide Nanopowder (Mn₂O₃, 30–50 nm, Purity 99.5%)
Technical Specifications
Property  | Specification  | 
|---|---|
Chemical Name  | Manganese(III) Oxide (Mn₂O₃)  | 
CAS Number  | 1317-35-7  | 
Molecular Weight  | 157.87 g/mol  | 
Purity  | ≥ 99.5%  | 
Appearance / Color  | Dark Brown / Black Fine Powder  | 
Particle Size (Average)  | 30–50 nm  | 
Morphology  | Nearly Spherical / Irregular  | 
Crystal Structure  | Cubic / Body-Centered (depending on synthesis)  | 
Density  | 4.86 g/cm³  | 
Specific Surface Area (BET)  | 25–50 m²/g  | 
Melting Point  | 1565 °C (decomposes)  | 
Boiling Point  | Decomposes above 2000 °C  | 
Solubility  | Insoluble in water; soluble in acids  | 
pH (in aqueous suspension)  | ~7.0  | 
Stability  | Chemically stable under ambient conditions; may oxidize or reduce under extreme conditions  | 
Key Features
High Purity (≥ 99.5%) ensures minimal contamination for sensitive applications.
Nanoscale Particle Size (30–50 nm): Provides high surface area and improved reactivity.
Dark Brown / Black Fine Powder: Easy to handle, disperse, and incorporate into matrices.
Uniform Morphology: Promotes homogeneous dispersion in composites and solutions.
Thermally Stable: Suitable for high-temperature applications.
Redox Active: Useful for catalysis and electrochemical applications.
Cubic Crystal Structure: Ensures consistent physical and chemical behavior.
Applications
1. Catalysis:
Used as a catalyst or catalyst support in oxidation reactions and organic synthesis.
Applicable in environmental catalysis for pollutant degradation.
2. Batteries & Energy Storage:
Functions as electrode material in lithium-ion, alkaline, and other battery systems.
Improves charge/discharge efficiency due to nanoscale size.
3. Pigments & Ceramics:
Used in ceramics and glass as a pigment and coloring agent.
Provides thermal stability and color consistency.
4. Environmental & Water Treatment:
Functions as an adsorbent for heavy metals and organic contaminants.
5. Nanotechnology & Research:
Employed in nanocomposites, sensors, and advanced material research.
Suitable for preparation of manganese-based functional materials.
6. Electronics & Magnetic Materials:
Investigated for magnetic devices, spintronics, and electronic applications.
