Shaoxing Catsyn Co., Ltd. Tel : +86 (0)575-82040869

Shaoxing Catsyn Co., Ltd.
Tri-propylphosphine

Tri-propylphosphine

  • Catalogue Number : GC10085
  • CAS Number : 2234-97-1
  • MDL Number : MFCD00015217
  • Molecular Formula : C9H21P
  • Molecular Weight : 160.24
  • Purity : 98% Min.
  • Category : Catalysts and Ligands
Description

Catsyn offer gram to tons of Tri-propylphosphine | CAS 2234-97-1, its formula is C9H21P, molecular weight is 160.24g/mol and the purity is usually 98% Min..

Synonyms : TRI-N-PROPYLPHOSPHINE;TRIPROPYL-PHOSPHANE;TRIPROPYLPHOSPHINE;Tri-propylphosphine

2234-97-1 As an organic compound with a specific structure, its molecular structure typically contains specific functional groups and conjugated systems, which determine its unique physicochemical properties. This substance exhibits distinct electronic effects, such as inductive and conjugation effects. These effects collectively regulate the distribution of its molecular orbital energy levels, particularly the energy difference between the highest occupied molecular orbital (HOMO) and the lowest unoccupied molecular orbital (LUMO), thus affecting its chemical stability and reactivity. The presence of its conjugated system enhances intramolecular electron delocalization, improves the overall stability of the molecule, and endows it with specific catalytic active sites. In catalytic reactions, this substance can form transition state complexes with substrate molecules through coordination, lowering the activation energy and thus significantly improving catalytic efficiency. Simultaneously, its excellent coordination properties stem from the presence of lone pairs of electrons or empty orbitals in the molecule, enabling it to form stable coordination bonds with metal ions, constructing highly efficient catalytic systems or coordination polymers.

In application fields, 2234-97-1, with its unique catalytic and coordination properties, demonstrates significant value in organic synthesis, materials science, and OLED (organic light-emitting diode) applications. As a catalyst, it can promote various chemical reactions, such as carbon-carbon bond formation and redox reactions, improving reaction selectivity and yield while reducing energy consumption and waste generation. In materials science, this substance, as a ligand, can coordinate with metal ions to form functional complexes for the preparation of high-performance optoelectronic materials, magnetic materials, or catalytic materials. Particularly in the OLED field, as a component of the electron transport layer or hole transport layer, it can optimize the electronic structure of devices, improve carrier mobility, thereby improving the luminous efficiency and stability of devices and driving the continuous development of OLED display technology. Its industry value lies not only in technological innovation but also in its contribution to green chemistry and sustainable development goals.

Enquiry

  • Email

    Company

  • Message

Related Products