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Calcium Phospate Nanoparticles [Ca3(PO4)2, APS: 30-50nm, Purity: 99.5%]
₹1475.00
Calcium Phosphate Nanoparticles / Nanopowder (Ca₃(PO₄)₂, APS 30–50 nm, Purity 99.5%)
⚙️ Technical Specifications
Property  | Specification  | 
|---|---|
Product Name  | Calcium Phosphate Nanoparticles / Nanopowder  | 
Chemical Formula  | Ca₃(PO₄)₂  | 
Purity  | ≥ 99.5%  | 
Average Particle Size (APS)  | 30–50 nm  | 
Appearance  | White fine powder  | 
Crystal Structure  | Hexagonal / Triclinic (depending on synthesis)  | 
Density  | ~3.07 g/cm³  | 
Melting Point  | Decomposes above 1,100°C  | 
Solubility  | Slightly soluble in water; soluble in acids  | 
pH (aqueous suspension)  | Slightly alkaline (~7–8)  | 
CAS Number  | 7758-87-4  | 
🌟 Key Features
High-purity (99.5%) nanoparticles with 30–50 nm particle size
Excellent biocompatibility and osteoconductivity
High surface area for fast bioactivity and ion exchange
Bioresorbable and non-toxic
Stable under ambient conditions and suitable for medical, dental, and research applications
Easily dispersible in polymers, scaffolds, cements, and composites
🔬 Applications (in Detail)
1. Bone Regeneration & Tissue Engineering
Acts as a scaffold material to support osteoblast adhesion, proliferation, and differentiation
Bioresorbable; gradually replaced by natural bone in vivo
Used in bone grafts, fillers, and 3D-printed scaffolds
2. Dental Applications
Used in tooth remineralization, dental fillers, and restorative cements
Improves biointegration and mechanical strength of dental materials
3. Drug Delivery Systems
Functions as a biodegradable carrier for growth factors, drugs, or biomolecules
Enables controlled ion/drug release in bone or dental applications
4. Composite & Polymer Reinforcement
Incorporated into polymer composites to enhance mechanical strength, thermal stability, and bioactivity
Used in hydroxyapatite–calcium phosphate composites for bone-mimicking properties
5. Biomedical Research
Model nanomaterial for osteoconductivity, resorbability, and bioactivity studies
Used in in vitro and in vivo tissue engineering research
6. Coatings & Surface Modifications
Applied as a bioactive coating on metallic implants for better osseointegration
Improves biocompatibility and corrosion resistance of implant surfaces
⚠️ Handling & Storage
Store in a sealed, dry container to avoid moisture absorption
Handle with gloves, mask, and eye protection to prevent nanoparticle inhalation
Stable under normal laboratory and ambient conditions; avoid strong acids
