Facile synthesis of (Z)-anti-homoallylic alcohols from 3-(pinacolatoboryl)allyl alcohols, aldehydes, and triorganoboranes via a palladium-catalyzed three-component reaction
Author:
Funder
JSPS KAKENHI
Publisher
Elsevier BV
Subject
Organic Chemistry,Drug Discovery,Biochemistry
Reference64 articles.
1. ELECTROPHILIC SUBSTITUTION OF STRUCTURALLY RIGID η1-ALLYLPALLADIUM COMPLEXES
2. Structure-Reactivity Relationship in Allyl and 2-Propynyl Complexes of Group 10 Metals Relevant to Homogeneous Catalysis
3. Palladium- and Platinum-Catalyzed Addition of Aldehydes and Imines with Allylstannanes. Chemoselective Allylation of Imines in the Presence of Aldehydes
4. Catalytic Asymmetric Allylation of Imines via Chiral Bis-π-allylpalladium Complexes
5. Chiral Bis-π-allylpalladium Complex Catalyzed Asymmetric Allylation of Imines: Enhancement of the Enantioselectivity and Chemical Yield in the Presence of Water
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1. Functional Group Transformation Via Allyl Rearrangement;Reference Module in Chemistry, Molecular Sciences and Chemical Engineering;2023
2. Versatile Reactivity of Metalloid‐Substituted π‐Allylpalladium Species;The Chemical Record;2021-10-14
3. Palladium-catalyzed diastereoselective synthesis of homoaldol equivalent products;Tetrahedron Letters;2017-05
4. Novel Carbon-Carbon Bond Forming Reactions by Allylpalladium Intermediates Possessing Silyl, Boryl, or Stannyl Groups;Journal of Synthetic Organic Chemistry, Japan;2017
5. ChemInform Abstract: Facile Synthesis of (Z)-anti-Homoallylic Alcohols from 3-(Pinacolatoboryl)allyl Alcohols, Aldehydes, and Triorganoboranes via a Palladium-Catalyzed Three-Component Reaction.;ChemInform;2016-11
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