Wang, Deqiang; Wang, Shichun; Hou, Guohua; Zi, Guofu; Walter, Marc D. published the article 《A Lewis Base Supported Terminal Uranium Phosphinidene Metallocene》. Keywords: uranium phospinidene metallocene preparation reactivity imine diazene carbodiimide nitrile; phospinidene uranium metallocene adduct imine diazene nitrile preparation; crystal structure uranium phospinidene metallocene adduct imine diazene nitrile; mol structure uranium phospinidene metallocene adduct imine diazene nitrile.They researched the compound: Trimethylphosphineoxide( cas:676-96-0 ).Recommanded Product: Trimethylphosphineoxide. Aromatic heterocyclic compounds can be divided into two categories: single heterocyclic and fused heterocyclic. In addition, there is a lot of other information about this compound (cas:676-96-0) here.
A Lewis base supported terminal U phosphinidene, [η5-1,3-(Me3C)2C5H3]2U(:P-2,4,6-tBu3C6H2)(OPMe3) (5), is isolated from the reaction of the U Me chloride [η5-1,3-(Me3C)2C5H3]2U(Cl)Me (4) with 2,4,6-(Me3C)3C6H2PHK in toluene in the presence of Me3PO. Also, the reactivity of the U phospinidene 5 toward small mols. were comprehensively explored. While no reactivity of 5 with internal alkynes is observed attributed to steric hindrance, it readily reacts with various small mols. including isothiocyanates, aldehydes, imines, diazenes, carbodiimides, nitriles, isonitriles, and organic azides, yielding U sulfides, oxides, metallaheterocycles, and imido complexes, in good yields. A Lewis base supported actinide phosphinidene metallocene was isolated and its reactivity toward small mols. was studied. It exhibits a rich reaction chem. toward a variety of heterounsatd. mols. and the steric hindrance imposed by the Cp ligand plays an important role in the formation and reaction chem. of U phosphinidene metallocenes.
There is still a lot of research devoted to this compound(SMILES:CP(C)(C)=O)Recommanded Product: Trimethylphosphineoxide, and with the development of science, more effects of this compound(676-96-0) can be discovered.
Reference:
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem