Several chiral sulfonyl compounds were prepared using the iridium catalyzed asymmetric hydrogenation reaction. Vinylic, allylic and homoallylic sulfone substitutions were investigated, and high enantioselectivity is maintained regardless of the location of the olefin with respect to the sulfone. Impressive stereoselectivity was obtained for dialkyl substitutions, which typically are challenging substrates in the hydrogenation. As expected, the more bulky <i>Z</i>-substrates were hydrogenated slower than the corresponding <i>E</i> isomers, and in slightly lower enantioselectivity
The development of new general methods for the synthesis of chiral fluorine-containing molecules is ...
The work presented in this thesis describes the development of enantioselective methods and their co...
Transition-metal catalyzed stereoselective hydrogenation constitutes an indispensable method for the...
Several chiral sulfonyl compounds were prepared using the iridium catalyzed asymmetric hydrogenation...
A highly efficient and enantioselective Ir-catalyzed hydrogenation of unsaturated sulfones was devel...
Transition-metal-catalyzed asymmetric hydrogenation is one of the most efficient, straightforward, a...
The work described in this thesis is focused on exploring the efficacy of asymmetric iridium catalys...
A highly efficient and enantioselective Rh-(R,R)-f-spiroPhos complex catalyzed hydrogenation of a se...
Asymmetric hydrogenation is one of the most important catalytic methods for the preparation of optic...
The research described in this thesis is directed toward the efficient, enantioselective synthesis o...
The asymmetric hydrogenation of olefins is a facile and popular method of reaching chiral products. ...
An efficient iridium-catalyzed asymmetric hydrogenation of substituted benzothiophene 1,1-dioxides i...
Asymmetric hydrogenation has emerged as a versatile methodology to obtain a wide range of chiral pre...
The work presented in this thesis concerns the iridium-catalyzed asymmetric hydrogenation of cyclic ...
The iridium-catalyzed asym. hydrogenation of several N-sulfonyl allyl amines was reported. All subst...
The development of new general methods for the synthesis of chiral fluorine-containing molecules is ...
The work presented in this thesis describes the development of enantioselective methods and their co...
Transition-metal catalyzed stereoselective hydrogenation constitutes an indispensable method for the...
Several chiral sulfonyl compounds were prepared using the iridium catalyzed asymmetric hydrogenation...
A highly efficient and enantioselective Ir-catalyzed hydrogenation of unsaturated sulfones was devel...
Transition-metal-catalyzed asymmetric hydrogenation is one of the most efficient, straightforward, a...
The work described in this thesis is focused on exploring the efficacy of asymmetric iridium catalys...
A highly efficient and enantioselective Rh-(R,R)-f-spiroPhos complex catalyzed hydrogenation of a se...
Asymmetric hydrogenation is one of the most important catalytic methods for the preparation of optic...
The research described in this thesis is directed toward the efficient, enantioselective synthesis o...
The asymmetric hydrogenation of olefins is a facile and popular method of reaching chiral products. ...
An efficient iridium-catalyzed asymmetric hydrogenation of substituted benzothiophene 1,1-dioxides i...
Asymmetric hydrogenation has emerged as a versatile methodology to obtain a wide range of chiral pre...
The work presented in this thesis concerns the iridium-catalyzed asymmetric hydrogenation of cyclic ...
The iridium-catalyzed asym. hydrogenation of several N-sulfonyl allyl amines was reported. All subst...
The development of new general methods for the synthesis of chiral fluorine-containing molecules is ...
The work presented in this thesis describes the development of enantioselective methods and their co...
Transition-metal catalyzed stereoselective hydrogenation constitutes an indispensable method for the...