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Acetals as Chiral Ligands for Organomagnesium and Organolithium Compounds
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Monatshefte f??r Chemie / Chemical Monthly
[DOI: 10.1007/PL00013503]
Zhang, J.-H.; Keh, C. C. K.; Li, C.-J., Science of Synthesis, (2004) 7, 672..
Asymmetric Addition of Dialkylmagnesium to Aldehydes
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Science of Synthesis
Ishihara, Kazuaki; Sakakura, Akira; Hatano, Manabu, Synlett 2007, 686-703.
Design of Highly Functional Small-Molecule Catalysts and Related Reactions Based on Acid&endash;Base Combination Chemistry
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Synlett
[DOI: 10.1055/s-2007-970776]
Yamada, Tohru, Synthesis 2008, 1628-1640.
Enantioselective Borohydride Reduction Catalyzed by Cobalt Complexes: Discovery, Analysis, and Design for a Halogen-Free System
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Synthesis
[DOI: 10.1055/s-2008-1067036]
Tanaka, Takanori; Hayashi, Masahiko, Synthesis 2008, 3361-3376.
New Approach for Complete Reversal of Enantioselectivity Using a Single Chiral Source
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Synthesis
[DOI: 10.1055/s-0028-1083171]
Stoltz, B.; Ebner, D. C.; Park, N..
Chemical and Chemo-Enzymatic Deracemization of Secondary Alcohols
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Science of Synthesis: Stereoselective Synthesis, (2011) 2, 236.
Witt, D..
Miscellaneous Reactions of Boron Alkanethiolates
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Science of Synthesis Knowledge Updates, (2011) 3, 304.
Lundberg, Helena; Adolfsson, Hans.
Catalytic ?-Alkylation/Reduction of Ketones with Primary Alcohols To Furnish Secondary Alcohols
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Synthesis 2016, 48, 644-652
[DOI: 10.1055/s-0035-1561315]
Ramón, D. J.; Yus, M..
Using Aldehydes
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Science of Synthesis: Stereoselective Synthesis, (2011) 2, 374.