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Catalog Number:
29869
CAS Number:
4736-60-1
Iodure d'éthyltriphénylphosphonium
Purity:
≥ 98 % (dosage)
Synonym(s):
Iodure d'éthyle de phénylphosphonium, ETPPI
Hazmat
Documents
$20.00 /25G
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Product Information

Utilisé comme réactif de Wittig et catalyseur de transfert de phase en synthèse organique. Il peut également être utilisé dans l'hydrogénation asymétrique et pour fabriquer des complexes polynucléaires de Bismuth(III).


Synonyms
Iodure d'éthyle de phénylphosphonium, ETPPI
CAS Number
4736-60-1
Purity
≥ 98 % (dosage)
Molecular Formula
C 20 H 20 PI
Molecular Weight
418.25
MDL Number
MFCD00040352
PubChem ID
78474
Appearance
Poudre cristalline blanc cassé à jaune pâle
Conditions
Conserver à 0-8 °C
General Information
Synonyms
Iodure d'éthyle de phénylphosphonium, ETPPI
CAS Number
4736-60-1
Purity
≥ 98 % (dosage)
Molecular Formula
C 20 H 20 PI
Molecular Weight
418.25
MDL Number
MFCD00040352
PubChem ID
78474
Appearance
Poudre cristalline blanc cassé à jaune pâle
Conditions
Conserver à 0-8 °C
Properties
Additional property information coming soon!
-
Safety and Regulations
Hazmat
Oui
Antibiotic
Non
DEA-regulated
Non
Warnings
-
Applications

Ethyltriphenylphosphonium iodide is widely utilized in research focused on:

  • Organic Synthesis: This compound serves as a key reagent in various organic reactions, particularly in the formation of phosphonium salts, which are essential for synthesizing complex organic molecules.
  • Catalysis: It acts as a catalyst in reactions such as the Wittig reaction, facilitating the formation of alkenes from aldehydes and ketones, which is crucial in the production of pharmaceuticals and agrochemicals.
  • Biological Studies: Researchers use it in studies related to cell signaling and membrane dynamics, as it can influence cellular processes by interacting with phospholipids.
  • Material Science: The compound is employed in developing advanced materials, including polymers and nanomaterials, due to its unique electronic properties.
  • Pharmaceutical Development: It plays a role in drug design and development, particularly in creating compounds that target specific biological pathways, enhancing therapeutic efficacy.

Citations