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Hydroxyapatite Nanopowder/Nanoparticles, Purity: 95% min, Size: 50 nm

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NG10SM0104
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1 gram/15 
5 grams/37                         
25 grams/94                        
100 grams/193  
500 grams/554                          
1000 grams/785 
  
  

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Hydroxyapatite Nanopowder/Nanoparticles

Purity: 95% min, Size: 50 nm

Hydroxyapatite is a naturally occurring mineral form of calcium phosphate represented by the formula Ca5(PO4)3OH⋅2H2O The OH− ion can be replaced by fluoride, chloride or carbonate, producing fluorapatite or chlorapatite. It is hydroxyapatite that gives bones and teeth their rigidity. Hydroxyapatite has a variety of applications such as orthopaedic, dental and maxillofacial applications. 

Technical Properties:  

Average Particle Size 50 nm
Appearance  White Powder     
Calcium Content  27.4%
Phosphorus Content  12.5%
Loss on Drying  2.21 %
PH (1.0% aqueous solution)  6.95
Heavy Metals  < 0.001%
Solubility  Ca/P:1.68
Sodium (Na)  0.3
Aluminum (Al) 0.035%
Iron (Fe) 0.05%
Sulfate Sulfate 0.048%
Melting Point 1650 ° C
Weight 3.16 g/cm
CAS Number 12167-74-7
Linear Formula [Ca5(OH)(PO4)3]x

Applications :

- Hydroxyapatite  Nanopowder/Nanoparticles use  for Drug and Gene delivery.
- Hydroxyapatite  Nanopowder/Nanoparticles use  for Early carious lesions treatment.
- Hydroxyapatite  Nanopowder/Nanoparticles use  for toothpastes.
- Hydroxyapatite  Nanopowder/Nanoparticles use  for Orthopedic and dental implant coating.
- Hydroxyapatite  Nanopowder/Nanoparticles use  for Endodontic treatment like pulp capping.
- Hydroxyapatite  Nanopowder/Nanoparticles use  for Bone tissue engineering.



 

Please click for the MSDS

 

FAQ

Technical FAQ About Hydroxyapatite Nanopowder, 95% Min Purity, 50 nm

1) Which specifications should be considered when evaluating this hydroxyapatite grade for research applications?

Key parameters include the 50 nm average particle size, minimum 95% purity, Ca/P ratio of 1.68, calcium and phosphorus contents, pH, heavy-metal level and loss on drying. These specifications provide a defined technical profile for comparing the material with other hydroxyapatite grades.

2) Why is the Ca/P ratio relevant when comparing hydroxyapatite nanopowders?

The Ca/P ratio provides a useful compositional parameter when comparing calcium phosphate materials. Nanografi specifies a Ca/P ratio of 1.68 for this 50 nm hydroxyapatite grade, together with calcium and phosphorus contents of 27.4% and 12.5%, respectively.

3) What compositional information is available for evaluating material consistency?

The technical data include calcium and phosphorus contents, a Ca/P ratio, and reported levels for sodium, aluminum, iron, sulfate and heavy metals. These values can be reviewed together when assessing whether the material specifications are appropriate for a particular research protocol.

4) Can this grade be evaluated for orthopedic and dental implant coating research?

Yes. Orthopedic and dental implant coating is specifically listed among the applications for Nanografi Hydroxyapatite Nanopowder. Suitability for a particular coating formulation or clinical-use pathway should be determined according to the requirements of the intended system.

5) Is the 50 nm hydroxyapatite suitable for bone tissue engineering studies?

Bone tissue engineering is listed as an application for this hydroxyapatite nanopowder. The 50 nm particle specification and compositional data provided on the product page can be used when assessing the material for a specific experimental design.

6) Which dental research areas are identified for this hydroxyapatite nanopowder?

The listed areas include early carious lesion treatment, toothpaste formulations, dental implant coatings and endodontic applications such as pulp capping. These are presented as application areas rather than claims of suitability for every formulation or treatment protocol.

7) Can Nanografi Hydroxyapatite Nanopowder be considered for drug or gene delivery research?

Yes. Drug and gene delivery are specifically included among the listed applications for this grade. The product page does not specify a particular delivery system, loading method or biological protocol, so these parameters should be established for the intended research application.

8) What information should be reviewed before selecting this grade for biomedical research?

Researchers should review the stated particle size, purity, Ca/P ratio, elemental composition, heavy-metal level, pH and the requirements of their intended application. Nanografi identifies biomedical-related uses including bone tissue engineering, dental applications, implant coatings and drug or gene delivery, while application-specific validation remains dependent on the research protocol.

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