首页 | 本学科首页   官方微博 | 高级检索  
     


Synthesis, structure and dynamic stereochemistry of (O → Si)-chelate N-(trifluorosilylmethyl)-[N-(S)-(1-phenylethyl)]acetamide and 1-(trifluorosilylmethyl)-2-oxoperhydroazepine: Retention of the O → Si coordination in the adduct with KF and 18-crown-6
Authors:Vadim V. Negrebetsky  Peter G. Taylor  Aleksander G. Shipov  Yuri E. Ovchinnikov  Allen Bowden  Yuri I. Baukov
Affiliation:a Russian State Medical University, Ostrovityanov St. 1, Moscow 117997, Russia
b Department of Chemistry, Open University, Walton Hall, Milton Keynes MK7 6AA, UK
c A. N. Nesmeyanov Institute of Organoelement Compounds, Vavilov St. 28, 119991 Moscow, Russia
d Novosibirsk State Pedagogical University, Vilyuiskaya St. 28, Novosibirsk 630126, Russia
Abstract:The novel compounds, N-(trifluorosilylmethyl)-[N-(S)-(1-phenylethyl)]-acetamide (1a) and 1-(trifluorosilylmethyl)-2-oxoperhydroazepine (1b) have been prepared from the corresponding NH-compounds using ClCH2SiCl3/Et3N or ClCH2SiCl3/(Me3Si)2NH followed by methanolysis or hydrolysis of the reaction mixture in the presence of Lewis bases, and then BF3 etherate. Potassium-(18-crown-6)-(2-oxoperhydroazepinomethyl)tetrafluorosilicate (2) was synthesized by reaction of the trifluoride (1b) with KF in the presence of 18-crown-6. Using 19F, 29Si NMR and X-ray diffraction techniques it was established that the silicon atom is pentacoordinate in the trifluorides (1ab) and hexacoordinate in the adduct 2. Thus the internal coordination of the O → Si bond present in the trifluoride (1b) is retained in the adduct 2.The stereochemical non-rigidity of the trifluorides (1ab) and the N-(trifluorosilylmethyl)-N-methylacetamide (1c) was investigated using dynamic 19F NMR spectroscopy. The activation barriers for permutational isomerization are in the range 9.5-10 kcal mol−1. Lower values of ΔG# for permutation of trifluorides (1a-c) compared to the monofluorides with the coordination core OSiC3F together with small negative values for the activation entropy implies a non-dissociative mechanism. Quantum-chemical analysis suggests a mechanism involving a turnstile rotation.
Keywords:Pentacoordination   Hexacoordination   X-ray diffraction study   Stereochemical non-rigidity   Dynamic NMR   Quantum-chemical calculations
本文献已被 ScienceDirect 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号