Tris-(2-cyanoethyl)-phosphine
  • Tris-(2-cyanoethyl)-phosphine
  • Tris-(2-cyanoethyl)-phosphine
  • Tris-(2-cyanoethyl)-phosphine
  • Tris-(2-cyanoethyl)-phosphine
  • Tris-(2-cyanoethyl)-phosphine
  • Tris-(2-cyanoethyl)-phosphine
  • Tris-(2-cyanoethyl)-phosphine
  • Tris-(2-cyanoethyl)-phosphine

Tris-(2-cyanoethyl)-phosphine

Product name:Tris-(2-cyanoethyl)-phosphine

Properties: Colorless to light yellow liquid

Molecular weight: 250.31500

Melting point: N/A

Boiling point: 259.5ºC at 760mmHg

Density: N/A

Flash point: 132.1ºC

  • Tris-(2-cyanoethyl)-phosphine
  • Tris-(2-cyanoethyl)-phosphine
  • Tris-(2-cyanoethyl)-phosphine
  • Tris-(2-cyanoethyl)-phosphine
SPECIFICATION

With the rapid development of nanotechnology, the demand for high-performance nanomaterials is becoming more and more urgent. Among them, new organic-inorganic hybrid nanomaterials have attracted much attention, and tri-(2-cyanoethyl) phosphine nanomaterials are one of them.

peculiarity:

Tri (2-cyanoethyl) phosphine nanomaterial is a novel organic-inorganic hybrid nanomaterial with potential. Nano-sized particles can be obtained by different preparation methods, and they have many excellent physical and chemical properties, and can be applied to optoelectronics, catalysis, biomedicine and other fields.

Tris-(2-cyanoethyl)-phosphine

Apply:

Due to its excellent photophysical and electrochemical properties, the material can be applied to many fields. For example, in the field of optoelectronics, tri (2-cyanoethyl) phosphine nanomaterials are often used to prepare efficient organic solar cells and light-emitting diodes and other devices; In the field of catalysis, the material can be used as a catalyst carrier or catalyst itself to participate in various organic reaction processes. In the field of biomedicine, tri (2-cyanoethyl) phosphine nanomaterials can also be used in cancer treatment, drug delivery and other aspects.

Tris-(2-cyanoethyl)-phosphine producer