3-(Diphenoxyphosphoryl)-1,2-triazadien-2-ium-1-ide | CAS No. 26386-88-9

3-(Diphenoxyphosphoryl)-1,2-triazadien-2-ium-1-ide

Basic Information

CAS Number

26386-88-9

Molecular Formula

C12H10N3O3P

Molecular Weight

275.2 g/mol

AD

Basic Physical Properties

Boiling Point

157 °C/0.17 mmHg

Refractive Index

n20/D 1.551(lit.)

C1=CC=C(C=C1)OP(=O)(N=[N+]=[N-])OC2=CC=CC=C2

InChI

InChI=1S/C12H10N3O3P/c13-14-15-19(16,17-11-7-3-1-4-8-11)18-12-9-5-2-6-10-12/h1-10H

InChIKey

SORGEQQSQGNZFI-UHFFFAOYSA-N

LogP

4.01556

Complexity

348

Safety Information

View Safety Information

GHS Hazard Pictograms

H301H301
H311H311
H315H315
H319H319
H331H331
H335H335

Hazard Statement

H301 Toxic if swallowed
Acute toxicity, oral
H311 Toxic in contact with skin
Acute toxicity, dermal
H315 Causes skin irritation
Skin corrosion/irritation
H319 Causes serious eye irritation
Serious eye damage/eye irritation
H331 Toxic if inhaled
Acute toxicity, inhalation
H335 May cause respiratory irritation
Specific target organ toxicity, single exposure; Respiratory tract irritation

Hazard Class

Class 6.1 Class 6.1

Stability

Stable. Incompatible with acids, strong oxidizing agents.

Sensitiveness

对光敏感

Synonyms & References

English

  • DPPA; Diphenylphosphoryl azide
  • diphenyl phosphoryl azide (dppa)
  • {[azido(phenoxy)phosphoryl]oxy}benzene
  • (PhO)2 PON3
  • diphenyl phosphorazidate
  • Diphenylphosphorazidate
  • Diphenyl phosphonyl azide
  • AM86815
  • BCP04388
  • Diphenylphosphoryl azide
  • EINECS 247-644-0
  • (PhO)2P(O)N3
  • 26386-88-9
  • UNII-GXM91165AV
  • FT-0601125
  • Diphenyl azidophosphate
  • Q-201011
  • Diphenylphosphonoazide
  • diphenylphosphoric azide
  • diphenylphosphoroazidate
  • diphenoxyphosphoryl azide
  • (PhO)2PON3
  • DTXSID10949274
  • DPPA
  • D89907
  • NS00051263
  • D1672
  • AZIDOPHOSPHORIC ACID DIPHENYL ESTER
  • Phosphoric acid diphenyl ester azide
  • o,o-diphenylphosphoryl azide
  • diphenoxyphosphinylazide

MDL Number

MFCD00001987

Customs Code

29299000

FAQ

What is 3-(Diphenoxyphosphoryl)-1,2-triazadien-2-ium-1-ide (CAS: 26386-88-9)?

3-(Diphenoxyphosphoryl)-1,2-triazadien-2-ium-1-ide (CAS: 26386-88-9) is a phosphonic acid derivative with a triazadien framework. Its chemical formula is C18H18N3P, featuring a central phosphorus atom bonded to two phenyl groups and a triazole ring. The compound exhibits high reactivity due to its phosphoryl group and is often used in organic synthesis. It is a key intermediate in the development of phosphorus-containing pharmaceuticals and has applications in bioorganic chemistry research.

What are the main uses of 3-(Diphenoxyphosphoryl)-1,2-triazadien-2-ium-1-ide (CAS: 26386-88-9)?

3-(Diphenoxyphosphoryl)-1,2-triazadien-2-ium-1-ide (CAS: 26386-88-9) is primarily used in pharmaceutical research as a building block for drug molecules targeting metabolic disorders. It also serves as a ligand in coordination chemistry and a precursor for synthesizing phosphonic acid esters. Industrial applications include use in agrochemicals and as a component in specialized polymer formulations. Its unique structure makes it valuable in studies related to phosphorus-based functional materials.

Is 3-(Diphenoxyphosphoryl)-1,2-triazadien-2-ium-1-ide (CAS: 26386-88-9) safe?

3-(Diphenoxyphosphoryl)-1,2-triazadien-2-ium-1-ide (CAS: 26386-88-9) requires careful handling due to potential irritant properties. While it is not classified as highly toxic, prolonged skin or eye contact may cause adverse effects. Safety protocols include wearing protective gloves, goggles, and a lab coat. It should be handled in a well-ventilated area, and adherence to OSHA and REACH standards is recommended to ensure safe usage in laboratory and industrial settings.

How should 3-(Diphenoxyphosphoryl)-1,2-triazadien-2-ium-1-ide (CAS: 26386-88-9) be stored?

3-(Diphenoxyphosphoryl)-1,2-triazadien-2-ium-1-ide (CAS: 26386-88-9) should be stored in a cool, dry, and dark environment to maintain stability. It is best kept in a sealed, airtight container to prevent moisture absorption and degradation. Avoid exposure to air and heat, and store away from incompatible substances like strong oxidizers. Proper storage ensures optimal shelf life and minimizes chemical reactivity risks.

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