Tributylethylphosphonium diethyl phosphate, >95%

Price range: $134.35 through $1,582.45

Product Code: IN-0018-TG

CAS NO: 20445-97-7

  • Chemical Formula: C18H42O4P2
  • Synonyms: P2444 DEP

Clear

Conductivity: 0.27 mS/cm (30 °C)

SUM Formula: C18H42O4P2

Molecular Weight: 384.47

Melting Point: <RT

Density: 1.01 g/cm³ (25 °C)

ECW: 4.4 V

Purity: >95%

Viscosity: 541 cP (25 °C)

  • SUM Formula: C18H42O4P2
  • Molecular Weight: 384.47
  • Melting Point:
  • Density: 1.01 g/cm³ (25 °C)
  • ECW: 4.4 V
  • Viscosity: 541 cP (25 °C)

Tributylethylphosphonium diethyl phosphate, CAS: 20445-97-7

Key Applications:

Hybrid Additive Systems

  • Functions as a co-additive in hybrid lubricant formulations where organophosphate functionality enhances boundary film formation.
  • Supports synergistic performance when blended with phosphonium or imidazolium ionic liquids, improving load-bearing capacity and reducing wear.
  • Useful in multi-component additive packages for advanced tribological studies, enabling controlled tuning of frictional behavior.

Viscosity Modification and Control

  • Acts as a viscosity modifier in lubricant basestocks, offering stable rheological behavior across broad temperature ranges.
  • Enhances flow characteristics in ionic liquid–hydrocarbon blends, improving pumpability and low-temperature performance.
  • Supports formulation of shear-stable fluids for high-stress mechanical environments.

Thermal and Oxidative Stability Enhancement

  • Contributes to improved thermal stability in high-temperature lubricant systems due to the inherent robustness of phosphonium cations.
  • Serves as a stabilizing component in fluids exposed to oxidative stress, extending operational lifetimes.

Catalysis and Reaction Media

  • Provides a polar, thermally stable medium for catalytic transformations requiring controlled acidity or organophosphate coordination.
  • Suitable for use in biphasic or semi-homogeneous systems where selective solvation and phase behavior are critical.

Materials Processing and Surface Engineering

  • Supports surface modification studies where ionic liquid–phosphate interactions influence film deposition or interfacial behavior.
  • Useful in polymer processing environments requiring antistatic behavior, controlled viscosity, or enhanced thermal resistance.

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