135394-91-1Relevant academic research and scientific papers
Iron-catalyzed cross-coupling of unactivated secondary alkyl thio ethers and sulfones with aryl grignard reagents
Denmark, Scott E.,Cresswell, Alexander J.
supporting information, p. 12593 - 12628 (2014/01/17)
The first systematic investigation of unactivated aliphatic sulfur compounds as electrophiles in transition-metal-catalyzed cross-coupling are described. Initial studies focused on discerning the structural and electronic features of the organosulfur substrate that enable the challenging oxidative addition to the C(sp3)-S bond. Through extensive optimization efforts, an Fe(acac)3-catalyzed cross-coupling of unactivated alkyl aryl thio ethers with aryl Grignard reagents was realized in which a nitrogen "directing group" on the S-aryl moiety of the thio ether served a critical role in facilitating the oxidative addition step. In addition, alkyl phenyl sulfones were found to be effective electrophiles in the Fe(acac) 3-catalyzed cross-coupling with aryl Grignard reagents. For the latter class of electrophile, a thorough assessment of the various reaction parameters revealed a dramatic enhancement in reaction efficiency with an excess of TMEDA (8.0 equiv). The optimized reaction protocol was used to evaluate the scope of the method with respect to both the organomagnesium nucleophile and sulfone electrophile.
Experimental evidence for negative hyperconjugation as a component of the polar effect: Variation of the ease of α-sulfonyl carbanion formation with the orientation of a β-alkoxy substituent
King, James F.,Rathore, Rajendra,Guo, Zhenrong,Li, Manqing,Payne, Nicholas C.
, p. 10308 - 10324 (2007/10/03)
We report evidence for a strongly geometry-dependent substituent effect. The rate constants for H-D exchange of the α-hydrogens, (k(exch))OR, in a set of 19 β-alkoxy sulfones of known, fixed (or strongly preferred) H-C(α)-C(β)-OR torsion angles have been
