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Catalog Number:
41117
CAS Number:
4168-73-4
Trihexylphosphine
Purity:
≥ 90% (CG)
Documents
$386.98 /25ML
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Product Information

Trihexylphosphine is a versatile organophosphorus compound known for its unique properties and applications in various fields. With a molecular structure that allows for effective coordination with metals, it serves as an excellent ligand in organometallic chemistry. Its ability to stabilize metal complexes makes it invaluable in catalysis, particularly in reactions involving transition metals. Researchers and industry professionals utilize Trihexylphosphine in the synthesis of phosphine oxide derivatives and as a reagent in organic synthesis, where it enhances reaction efficiency and selectivity.

Additionally, Trihexylphosphine is recognized for its role in the development of advanced materials, including polymers and nanomaterials, due to its compatibility with various substrates. Its hydrophobic nature and thermal stability further expand its utility in applications such as surface modification and as a stabilizing agent in colloidal systems. By choosing Trihexylphosphine, professionals can leverage its unique properties to drive innovation and improve outcomes in their projects.

CAS Number
4168-73-4
Purity
≥ 90% (CG)
Molecular Formula
C 18 H 39 P
Molecular Weight
286.48
MDL Number
MFCD00015285
PubChem ID
77831
Density
0,83 g/mL
Appearance
Liquide clair incolore
Boiling Point
227 °C / 50 mmHg (Lit.)
Refractive Index
n20D 1.47
Conditions
Magasin chez RT
General Information
CAS Number
4168-73-4
Purity
≥ 90% (CG)
Molecular Formula
C 18 H 39 P
Molecular Weight
286.48
MDL Number
MFCD00015285
PubChem ID
77831
Density
0,83 g/mL
Appearance
Liquide clair incolore
Boiling Point
227 °C / 50 mmHg (Lit.)
Refractive Index
n20D 1.47
Conditions
Magasin chez RT
Properties
Additional property information coming soon!
-
Safety and Regulations
Hazmat
Non
Antibiotic
Non
DEA-regulated
Non
Warnings
-
Applications

Trihexylphosphine is widely utilized in research focused on:

  • Catalysis: It serves as a ligand in various catalytic processes, enhancing reaction efficiency and selectivity in organic synthesis, particularly in palladium-catalyzed reactions.
  • Organometallic Chemistry: This compound is crucial in the preparation of organometallic complexes, which are essential for developing new materials and pharmaceuticals.
  • Pharmaceutical Development: Trihexylphosphine is used in drug formulation and development, aiding in the synthesis of active pharmaceutical ingredients (APIs) with improved bioavailability.
  • Nanotechnology: It plays a role in the synthesis of nanoparticles, contributing to advancements in electronics and materials science by improving the stability and functionality of nanomaterials.
  • Surface Chemistry: The chemical is applied in modifying surfaces to enhance properties such as hydrophobicity or biocompatibility, which is beneficial in biomedical applications and sensor technology.

Citations