triphosphooxyalumane | CAS No. 13776-88-0

triphosphooxyalumane

Basic Information

CAS Number

13776-88-0

Molecular Formula

AlO9P3

Molecular Weight

263.9 g/mol

AD

Basic Physical Properties

O=P(=O)O[Al](OP(=O)=O)OP(=O)=O

InChI

InChI=1S/Al.3HO3P/c;3*1-4(2)3/h;3*(H,1,2,3)/q+3;;;/p-3

InChIKey

DHAHRLDIUIPTCJ-UHFFFAOYSA-K

LogP

1.2847999999999997

Topological Polar Surface Area

130.11 Ų

Hydrogen Bond Donor/Acceptor

0 / 9

Complexity

36.5

Synonyms & References

English

  • Aluminum Metaphosphate
  • Aluminiummetaphosphate
  • ALUMINUM PHOSPHATE,META
  • Metaphosphoricacid,aluminumsalt
  • Trimetaphosphoric acid aluminum salt
  • Aluminummetaphosphate (Al(PO3)3) (6CI,7CI)
  • Metaphosphoric acid (HPO3), aluminum salt(8CI,9CI)
  • Aluminium metaphosphate (Al(PO3)3)
  • Aluminum phosphate (Al(PO3)3)
  • Aluminum phosphate (AlP3O9)
  • Aluminum trimetaphosphate
  • K 90
  • K 90 (phosphate)
  • K 94
  • K-Bond 90
  • M 16-04
  • metaphosphoricacid(hpo3),aluminumsalt
  • (Triphosphoric acid α,β,γ-aluminum)α,γ-anhydride salt
  • ALUMINUM PHOSPHATE, META
  • ALUMINUM METAPHOSPHATE

MDL Number

MFCD00075314

FAQ

What are the physical and chemical properties of triphosphooxyalumane (CAS: 13776-88-0)?

Triphosphooxyalumane (CAS: 13776-88-0) is a crystalline solid with a high molecular weight and low solubility in common organic solvents. It exhibits limited reactivity with common reagents, showing stability under normal conditions. It is not flammable but can react with strong acids and bases to release heat and gases.

How is triphosphooxyalumane (CAS: 13776-88-0) typically synthesized?

Triphosphooxyalumane is typically synthesized through the reaction of aluminum oxide with phosphorus pentoxide under high temperatures. The process requires careful control of temperature and pressure to achieve the desired yield and selectivity. The presence of a catalyst can enhance the reaction rate and product purity.

What industries use triphosphooxyalumane (CAS: 13776-88-0)?

Triphosphooxyalumane (CAS: 13776-88-0) finds applications in the pharmaceutical industry for the synthesis of certain organic compounds. It is also used in the production of polymers as a catalyst, in sensors for its high surface area and reactivity, and in semiconductor manufacturing for its thermal stability and chemical inertness.

What precautions should be taken when handling triphosphooxyalumane (CAS: 13776-88-0)?

When handling triphosphooxyalumane (CAS: 13776-88-0), it is essential to use personal protective equipment (PPE) such as gloves, goggles, and a lab coat. Work should be conducted in a well-ventilated area or a fume hood to minimize exposure. Spills should be addressed using appropriate absorbents, and the material safety data sheet (MSDS) should be referenced for detailed emergency procedures and handling instructions.

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