1190705-69-1Relevant academic research and scientific papers
Oxo/Imido heterometathesis reactions catalyzed by a silica-supported tantalum imido complex
Zhizhko, Pavel A.,Zhizhin, Anton A.,Belyakova, Olga A.,Zubavichus, Yan V.,Kolyagin, Yuriy G.,Zarubin, Dmitry N.,Ustynyuk, Nikolai A.
supporting information, p. 3611 - 3617 (2013/07/26)
Grafting Ta(=NtBu)(CH2CMe2Ph)3 onto the surface of silica partially dehydroxylated at 300°C leads to the formation of the surface imido complex (≡SiO)2Ta(=N tBu)(CH2CMe2Ph) as a major species, which was characterized with EXAFS, 13C CP/MAS NMR, diffuse reflectance FTIR, elemental analyses, and chemical reactivity. The obtained material acts as an efficient heterogeneous catalyst for various oxo/imido heterometathesis transformations: imidation of ketones and DMF with N-sulfinylamines and condensation of N-sulfinylamines into sulfurdiimines and phenyl isocyanate into diphenylcarbodiimide.
Oxo/imido heterometathesis between N-sulfinylamines and ketones catalyzed by a silica-supported molybdenum imido complex
Zhizhko, Pavel A.,Zhizhin, Anton A.,Zarubin, Dmitry N.,Ustynyuk, Nikolai A.
body text, p. 64 - 66 (2012/07/01)
Grafting the molecular complex (MesN)2Mo(CH2CMe2Ph)2 onto the surface of silica dramatically enhances its catalytic activity in the oxo/imido heterometathesis reaction of N-sulfinylamines with carbonyl compounds.
Molybdenum-mediated imido-transfer reaction of N-sulfinylamines with dimethylformamide
Zhizhin, Anton A.,Zarubin, Dmitry N.,Ustynyuk, Nikolai A.
experimental part, p. 165 - 166 (2009/09/06)
Dimethylformamide undergoes molybdenum-mediated metathetical imido-deoxygenation with ortho-substituted by donor atoms N-sulfinylanilines affording formamidines; N-sulfinylamines undergo molybdenum-mediated condensation into sulfurdiimines.
