Results
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Perez et al..
Catalytic asymmetric carbon-carbon bond formation via allylic alkylations with organolithium compounds
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Nature Chemistry, 2011
[DOI: 10.1038/nchem.1009]
Schobert, R.; Gordon, G. J., Science of Synthesis, (2004) 27, 1023..
Directed Stereoselective Alkenation Procedures
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Science of Synthesis
Zhang, J.-H.; Keh, C. C. K.; Li, C.-J., Science of Synthesis, (2004) 7, 514..
Magnesium Hydride as a Reducing Agent
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Science of Synthesis
Heaney, H.; Christie, S., Science of Synthesis, (2004) 3, 529..
Substitution Reactions Using a Catalytic Amount of Copper Salt
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Science of Synthesis
Matteson, D. S., Science of Synthesis, (2005) 6, 212..
Aldol–Grob Reaction
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Science of Synthesis
Jończyk, A.; Kowalkowska, A., Science of Synthesis, (2006) 8, 1043..
Phosphorus Ylides; Alkenation by the Wittig Reaction
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Science of Synthesis
Sweeney, J. B., Science of Synthesis, (2009) 40, 648..
Addition of Metal Nitrenoids
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Science of Synthesis
Drabowicz, J.; Kiełbasiński, P.; Łyżwa, P.; Zając, A.; Mikołajczyk, M., Science of Synthesis, (2008) 39, 84..
Catalytic N-Sulfonylaziridination of Alkanes with Sulfonyl Chlorides in the Presence of a Nitridomanganese Complex
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Science of Synthesis
Roy, K.-M., Science of Synthesis, (2010) 47, 897..
Catalytic Hydrogenation
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Science of Synthesis
Jennequin, Thomas; Wencel-Delord, Joanna; Rix, Diane; Daubignard, Julien; Crévisy, Christophe; Mauduit, Marc, Synlett 2010, 1661-1665.
Chelating Hydroxyalkyl NHC as Efficient Chiral Ligands for Room-Temperature Copper-Catalyzed Asymmetric Allylic Alkylation
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Synlett
[DOI: 10.1055/s-0029-1220127]
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