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Catsyn offer gram to tons of Hexaethyl phosphorous triamide | CAS 2283-11-6, its formula is C12H30N3P, molecular weight is 247.36g/mol and the purity is usually 98% Min..
Synonyms : Hexaethyl phosphorous triamide
This substance (CAS No.: 2283-11-6), acting as a catalyst and ligand, typically contains specific functional groups or heteroatoms (such as nitrogen, phosphorus, and oxygen) in its molecular structure. These groups interact with other atoms or molecules through covalent or coordinate bonds, forming a stable chemical structure. Its physicochemical properties include specific melting and boiling points, solubility, and chemical stability. These characteristics are closely related to its intramolecular electronic effects, such as inductive and conjugation effects, which influence its reactivity by regulating molecular orbital energy levels. This substance may possess a conjugated system, which lowers the overall molecular energy through π-electron delocalization, enhancing stability and providing active sites for catalytic reactions. Its catalytic activity stems from its ability to adsorb, activate, and stabilize reactant molecules and intermediates, while its coordination properties are reflected in its ability to form stable complexes with metal centers (such as transition metals), optimizing catalytic efficiency by adjusting the electronic state and spatial configuration of the metal. Under specific conditions, this substance may exhibit excellent thermal stability and chemical inertness, ensuring its long-term effectiveness in complex reaction systems. This substance has significant application value in materials science, organic synthesis, and OLED fields. As a catalyst, its core function is to accelerate the rate of specific chemical reactions, lower the activation energy, and improve the selectivity of target products, such as achieving the efficient construction of chiral centers in asymmetric catalysis. As a ligand, it forms homogeneous or heterogeneous catalysts by coordinating with metal centers, and is widely used in polymerization reactions, cross-coupling reactions, and redox processes, significantly improving reaction efficiency and atom economy. In OLED manufacturing, this substance may participate as a functional ligand in the synthesis of metal complexes, optimizing the electron transport performance and photoluminescence efficiency of the light-emitting layer material, and promoting the development of high-color-purity, long-life display devices. Its industry value lies in its role in promoting green chemistry processes, contributing to the achievement of sustainable development goals by reducing by-product generation and energy consumption, while providing key technological support in the preparation of high-end materials.