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237132

Sigma-Aldrich

Calcium sulfate

−325 mesh, 99%

Synonym(s):
Gypsum
Linear Formula:
CaSO4
CAS Number:
Molecular Weight:
136.14
EC Number:
MDL number:
PubChem Substance ID:
NACRES:
NA.55

Quality Level

Assay

99%

form

powder

technique(s)

IR spectroscopy: suitable

particle size

−325 mesh

SMILES string

[Ca++].[O-]S([O-])(=O)=O

InChI

1S/Ca.H2O4S/c;1-5(2,3)4/h;(H2,1,2,3,4)/q+2;/p-2

InChI key

OSGAYBCDTDRGGQ-UHFFFAOYSA-L

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1 of 4

This Item
255696238988238910
Calcium sulfate −325 mesh, 99%

Sigma-Aldrich

237132

Calcium sulfate

Calcium sulfate ≥99.99% trace metals basis

Sigma-Aldrich

255696

Calcium sulfate

Drierite™ with indicator, 8 mesh

Sigma-Aldrich

238988

Drierite

Drierite™ without indicator, 4 mesh

Sigma-Aldrich

238910

Drierite

form

powder

form

powder and chunks

form

chunks

form

chunks

technique(s)

IR spectroscopy: suitable

technique(s)

-

technique(s)

-

technique(s)

ion chromatography: suitable

particle size

−325 mesh

particle size

-

particle size

8 mesh

particle size

4 mesh

Storage Class Code

11 - Combustible Solids

WGK

WGK 1

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable


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Formation and morphology of calcium sulfate nanoparticles and nanowires in water-in-oil microemulsions.
Rees GD, et al.
Langmuir, 15(6), 1993-2002 (1999)
Kinetics of calcium sulfoaluminate formation from tricalcium aluminate, calcium sulfate and calcium oxide.
Li X, et al.
Cement and Concrete Research, 55, 79-87 (2014)
Claudia Fischbach et al.
Proceedings of the National Academy of Sciences of the United States of America, 106(2), 399-404 (2009-01-08)
Three-dimensional culture alters cancer cell signaling; however, the underlying mechanisms and importance of these changes on tumor vascularization remain unclear. A hydrogel system was used to examine the role of the transition from 2D to 3D culture, with and without
Mark V Thomas et al.
Journal of biomedical materials research. Part B, Applied biomaterials, 88(2), 597-610 (2008-11-26)
Calcium sulfate (CS) has enjoyed a longer history of clinical use than most currently available biomaterials. It is well-tolerated when used to fill bone defects and undergoes rapid and complete resorption without eliciting a significant inflammatory response. The raw material
Nathaniel Huebsch et al.
Proceedings of the National Academy of Sciences of the United States of America, 111(27), 9762-9767 (2014-06-26)
Biological systems are exquisitely sensitive to the location and timing of physiologic cues and drugs. This spatiotemporal sensitivity presents opportunities for developing new therapeutic approaches. Polymer-based delivery systems are used extensively for attaining localized, sustained release of bioactive molecules. However

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