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Titlebook: Chiral Lewis Acids; Koichi Mikami Book 2018 Springer International Publishing AG 2018 Alder Ene Reaction.Bimetallic Lexis Acids.Broensted

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1436-6002 in the field.Volumes are useful and of relevance for a longThe series Topics in Organometallic Chemistry presents critical overviews of research results in organometallic chemistry. As our understanding of organometallic structure, properties and mechanisms increases, new ways are opened for the de
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https://doi.org/10.1007/978-94-007-1344-4articularly effective for activating low reactivity substrates in a highly stereoselective manner without the aid of stoichiometric activating reagents. The privileged bimetallic catalysts presented here highlight the importance of catalyst design in the development of widely applicable catalytic systems.
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Preference over Worlds: Static Logicdol reaction, (2) asymmetric Mannich reaction, (3) asymmetric Michael reaction, (4) asymmetric Friedel-Crafts reaction, (5) asymmetric homologation of carbonyl compounds with α-diazoesters, (6) asymmetric ene-type reaction, (7) asymmetric cycloaddition reaction, (8) asymmetric ring-opening reaction, and (9) asymmetric miscellaneous reaction.
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Chiral Bimetallic Lewis Acids,articularly effective for activating low reactivity substrates in a highly stereoselective manner without the aid of stoichiometric activating reagents. The privileged bimetallic catalysts presented here highlight the importance of catalyst design in the development of widely applicable catalytic systems.
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Preference from Priorities: Dynamic Logicter starts with a brief introduction to frustrated Lewis pair chemistry. The second part focuses on the synthetic challenges of chiral borane-derived Lewis acids for asymmetric transformations. The last part gives a state-of-the-art summary of asymmetric transformations using chiral FLPs.
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Chiral Borane-Based Lewis Acids for Metal Free Hydrogenations,ter starts with a brief introduction to frustrated Lewis pair chemistry. The second part focuses on the synthetic challenges of chiral borane-derived Lewis acids for asymmetric transformations. The last part gives a state-of-the-art summary of asymmetric transformations using chiral FLPs.
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