65108-23-8Relevant academic research and scientific papers
New metal-free one-pot synthesis of substituted allenes from enones
Tang, Meng,Fan, Chun-An,Zhang, Fu-Min,Tu, Yong-Qiang,Zhang, Wen-Xue,Wang, Ai-Xia
supporting information; experimental part, p. 5585 - 5588 (2009/06/18)
(Chemical Equation Presented) A new metal-free, one-pot synthesis of substituted allenes from enones was discovered for the first time, in which a tertiary amine as a base was found to be an effective promoter in such novel transformations. The present synthetic protocol proceeded readily with high compatibility of sensitive functional groups, and it provides a new efficient way to access a series of synthetically important allenes without the use of metallic reagents or catalysts.
Ligand exchange reaction of sulfoxides in organic synthesis: A novel method for synthesizing acetylenes and allenes from carbonyl compounds through sulfoxides having a trifluoromethanesulfonyloxy group on the β-carbon
Satoh, Tsuyoshi,Itoh, Norifumi,Watanabe, Shizue,Koike, Hirofumi,Matsuno, Haruko,Matsuda, Kenji,Yamakawa, Koji
, p. 9327 - 9338 (2007/10/02)
A novel method for synthesizing acetylenes and allenes from carbonyl compounds is described. Ligand exchange reaction of alkenylsulfoxides having a trifluoromethanesulfonyloxy group on the β-carbon, which were derived from α-alkyl β-ketosulfoxides, with n
Palladium Complexes Containing Rigid Bidentate Nitrogen Ligands as Catalysts for Carbon-Carbon Bond Formation
Asselt, Rob van,Elsevier, Cornelis J.
, p. 323 - 334 (2007/10/02)
Zerovalent Pd(Ar-BIAN)(dimethyl fumarate) and divalent PdCl2(Ar-BIAN) complexes containing the rigid bidentate nitrogen ligand bis(arylimino)acenaphthene (Ar-BIAN; Ar = C6H5, p-MeC6H4, p-MeOC6H4) are efficient catalysts for the cross coupling reaction of various organic halides (including acyl-, allyl-, aryl-, benzyl-, vinyl- and 1,2-dienylhalides) with organomagnesium, -zinc and -tin reagents.Coupling reactions of organic halides with one equivalent of organomagnesium and -zinc reagents, in the presence of 1 mol percent of a Pd(Ar-BIAN) catalyst, generally proceed smoothly in THF at 20 degC, giving complete conversion of the starting halide within 1-16 hours.Good isolated yields of carbon-carbon coupled products are obtained and the ratio cross/homo coupling varies between 98/2 and 0/100, depending on the substrates used.Reactions employing organotin reagents proceed best in DMF or HMPA and need longer reaction times and/or higher temperatures, as compared to organomagnesium and -zinc reagents, to go to completion.The selectivity for cross coupling is high (generally >99 percent) and high isolated yields of cross coupled products can be obtained.In the presence of carbon monoxide (1-5 bar) ketones can be formed with excellent selectivity and in good yields, as was demonstrated for the carbonylative coupling of benzyl bromide with tetramethyltin or (p-tolyl)trimethyltin.Comparison of some Pd(Ar-BIAN) catalyzed reactions with Pd-phosphine catalyzed reactions reveals that these reactions complement each other: for example, when a Pd(Ar-BIAN) catalyst was employed, the coupling of 2-methylallyl chloride with phenyltributyltin was much faster, whereas the coupling of iodobenzene with vinyltrimethyltin was much slower, as compared to the Pd(PPh3)n catalyzed reactions.
