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900205

Sigma-Aldrich

Tricalcium phosphate

powder, 4 μm, ≥80 m2g

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Synonym(s):
β-Tricalcium Phosphate, Calcium orthophosphate, Calcium tertiary phosphate, Tricalcium diphosphate
Linear Formula:
Ca3(PO4)2
CAS Number:
EC Number:
PubChem Substance ID:

Quality Level

description

Total Heavy Metals: ≤20 ppm

form

powder

surface area

≥80 m2/g

particle size

4 μm
4.0 μm±2.0 μm

SMILES string

O=P(O)(O)O.O=P(O)(O)O.[Ca].[Ca].[Ca]

InChI

1S/3Ca.2H3O4P.6H/c;;;2*1-5(2,3)4;;;;;;/h;;;2*(H3,1,2,3,4);;;;;;

InChI key

ICMNCASQGLGEKN-UHFFFAOYSA-N

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This Item
4996391860150553
Tricalcium phosphate powder, 4 μm, ≥80 m2g

900205

Tricalcium phosphate

β-tri-Calcium phosphate puriss. p.a., ≥98% β-phase basis (sintered Powder)

49963

β-tri-Calcium phosphate

Alpha-Tricalcium phosphate (TCP), powder, ≥98%, <500 μm particle size

918601

Alpha-Tricalcium phosphate

α-Tri-Calcium phosphate Reagent for transient & stable DNA transfections

50553

α-Tri-Calcium phosphate

form

powder

form

powder

form

powder

form

powder

description

Total Heavy Metals: ≤20 ppm

description

-

description

-

description

-

surface area

≥80 m2/g

surface area

-

surface area

-

surface area

-

particle size

4 μm

particle size

-

particle size

<500 μm

particle size

-

Application

Hydroxyapatite and tricalcium phosphate are bioactive ceramic materials and they find applications as bone grafts, fillers and coating material for metal implants.

Storage Class

11 - Combustible Solids

wgk_germany

WGK 1

flash_point_f

Not applicable

flash_point_c

Not applicable


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25G
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705578-5MG-PW

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MMYOMAG-74K-13

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Sahar Vahabzadeh et al.
Acta biomaterialia, 17, 47-55 (2015-02-02)
In this work we have investigated the effects of strontium (Sr) dopant on in vitro protein release kinetics and in vivo osteogenic properties of plasma sprayed hydroxyapatite (HA) coatings, along with their dissolution behavior. Plasma sprayed HA coatings are widely
Liu Y, et al.
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Sophie C Cox et al.
Materials science & engineering. C, Materials for biological applications, 47, 237-247 (2014-12-11)
A systematic characterisation of bone tissue scaffolds fabricated via 3D printing from hydroxyapatite (HA) and poly(vinyl)alcohol (PVOH) composite powders is presented. Flowability of HA:PVOH precursor materials was observed to affect mechanical stability, microstructure and porosity of 3D printed scaffolds. Anisotropic
Lu Xie et al.
Materials science & engineering. C, Materials for biological applications, 59, 1007-1015 (2015-12-15)
The ideal bone tissue engineering scaffolds are long-cherished with the properties of interconnected macroporous structures, adjustable degradation and excellent biocompatibility. Here, a series of porous α/β-tricalcium phosphate (α/β-TCP) biphasic bioceramics with different phase ratios of α-TCP and β-TCP were successfully

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