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Catalytic Formal Conjugate Addition: Direct Synthesis of δ-Hydroxynitriles from Nitriles and Allylic Alcohols

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TLDR
In this article , a simple and selective coupling of nitriles with allylic alcohols catalyzed by a ruthenium pincer complex is described, which tolerates reactive functional groups such as carbamate, sulfonate, olefin, cyano, and trifluoromethyl-substituted benzyl nithriles.
Abstract
Alcohols and nitrile functionalities have widespread applications in biochemical and chemical synthesis. Catalytic transformations involving C–C bond formation relying on unsaturated coupling partners create important pathways for processes in synthetic, material, and medicinal chemistry. The discovery of a simple and selective coupling of nitriles with allylic alcohols catalyzed by a ruthenium pincer complex is described, which tolerates reactive functional groups such as carbamate, sulfonate, olefin, cyano, and trifluoromethyl-substituted benzyl nitriles. Homo allylic alcohols also provided 1,4-addition products following the isomerization of double bonds. Mechanistic studies supported that the allylic alcohols initially undergo selective oxidation by the catalyst to α,β-unsaturated carbonyl compounds followed by 1,4-conjugate addition of benzyl nitriles catalyzed by a base and subsequent catalytic reduction of carbonyl functionality, leading to the formation of δ-hydroxynitrile products. The catalytic cycle of this tandem process is established by density functional theory studies. Remarkably, anipamil drug is successfully synthesized using this catalytic protocol. The utility of the δ-hydroxynitrile products in the synthesis of biologically active molecules and their further functionalization are also demonstrated.

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Journal ArticleDOI

Recent advances in C/N-alkylation with alcohols through hydride transfer strategies.

TL;DR: In this paper , the authors highlight the most recent reports in three powerful and evergrowing fields of borrowing hydrogen, acceptorless dehydrogenative coupling, and base-mediated hydride transfer strategies, which pave the way for generating reactive intermediates via shuttling hydrogen between starting materials without any need for an external hydrogen source.
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Progressive study on ruthenium catalysis for de(hydrogenative) alkylation and alkenylation using alcohols as a sustainable source.

TL;DR: In this paper , the authors focus on the development of Ru-based catalyst systems for C-alkylation/alkenylation reactions via the Acceptorless Dehydrogenation (AD) or borrowing hydrogen (BH) approaches.
Journal ArticleDOI

Nickel-Catalyzed Direct Substitution of Allylic Alcohols with Nitriles: A General Tool for the Construction of Acyclic C2-Tertiary or Quaternary Benzyl Nitriles.

Mei Yang, +2 more
- 14 Feb 2023 - 
TL;DR: A nickel-catalyzed direct reaction of allylic alcohols with benzyl nitrile derivatives has been developed in this paper , which provides an efficient route for the synthesis of nitriles bearing an α-tertiary or quaternary carbon center.
Journal ArticleDOI

Dehydrogenative Intramolecular Macrolactonization of Dihydroxy Compounds Using Ru-MACHO Catalyst.

TL;DR: In this article , a new approach for the synthesis of 11 to 21-membered macrolactones via intramolecular dehydrogenative coupling of primary alcohols by using Ru-MACHO as a catalyst and Cs2CO3 as a base.
Journal ArticleDOI

Ruthenium-catalysed α-prenylation of ketones using prenol.

TL;DR: In this paper , an unprecedented direct catalytic prenylation of ketones using prenol was achieved, which requires only a ruthenium pincer catalyst and a base, and H2O is the only byproduct.
References
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