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Journal ArticleDOI

Scope and Utility of a New Soluble Copper Catalyst [CuBr−LiSPh−LiBr−THF]: A Comparison with Other Copper Catalysts in Their Ability to Couple One Equivalent of a Grignard Reagent with an Alkyl Sulfonate

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TLDR
In this paper, a mixture of equal amounts of CuBr−SMe2, LiBr, and LiSPh in THF at 0 °C furnished a new soluble copper catalyst that was highly efficient at coupling primary, secondary, tertiary, aryl, vinyl, and allylic Grignard reagents to primary tosylates and primary Grignards to secondary sulfonates.
Abstract
A mixture of equal amounts of CuBr−SMe2, LiBr, and LiSPh in THF at 0 °C furnished a new soluble copper catalyst that was highly efficient at coupling primary, secondary, tertiary, aryl, vinyl, and allylic Grignard reagents to primary tosylates and primary Grignard reagents to secondary tosylates and mesylates, all with the use of only 1 equiv of Grignard reagent. The new catalyst was shown to be much more reactive than copper catalysts CuBr and Li2CuCl4 and more efficient in the transference of secondary and tertiary alkyl groups than lower order cuprates (Gilman reagents) and demonstrated more reactivity than the lower order cuprates with its ability to couple primary Grignard reagents to secondary sulfonates. The Grignard reagent/catalyst system was compatible with an ester functionalized tosylate, thus proving to be more chemoselective than a Grignard reagent without the catalyst. The catalyst exhibited good reactivity below room temperature, and with the addition of 6% v/v of HMPA to the catalyst solu...

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Citations
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Copper in cross-coupling reactions: The post-Ullmann chemistry

TL;DR: A number of methods using various copper complexes and salts to carry out cross-coupling reactions leading to the formation of C heteroatom (C N, C O, C S, C P, C Se), C C, and C metal bonds have been proposed as discussed by the authors.
Journal ArticleDOI

Transition metal-catalyzed alkyl-alkyl bond formation: Another dimension in cross-coupling chemistry.

TL;DR: Recent developments in forming bonds between the more abundant alkyl carbon centers that underlie diverse molecules with complex three-dimensional structures are reviewed, with a number of major challenges remain.
Journal ArticleDOI

Pd-catalyzed cross-coupling reactions of alkyl halides

TL;DR: This tutorial review summarizes recent advances in cross-coupling reactions of alkyl halides and pseudohalides catalyzed by a palladium complex by introducing new effective ligands.
Journal ArticleDOI

Alkylboronic Esters from Copper-Catalyzed Borylation of Primary and Secondary Alkyl Halides and Pseudohalides

TL;DR: An unprecedented copper-catalyzed cross-coupling reaction of the title compounds with diboron reagents is described, used to prepare both primary and secondary alkylboronic esters having diverse structures and functional groups.
Journal ArticleDOI

Cross-Coupling Reaction of Alkyl Halides with Grignard Reagents Catalyzed by Ni, Pd, or Cu Complexes with π-Carbon Ligand(s)

TL;DR: New catalytic systems that do not involve M(0) species but proceed via an anionic complex as the key intermediate are developed, and new catalytic reactions use pi-carbon ligands such as pi-allyl units or alkynes instead of heteroatom ligand such as phosphines or amines are extended.
References
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Journal ArticleDOI

Synthesis and reactivity toward acyl chlorides and enones of the new highly functionalized copper reagents RCu(CN)ZnI

TL;DR: In this article, the composes du titre sont prepares par transmetallation a partir d'iodures d'alkyl zinc and du sel CuCN•2LiX.
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Use of intermolecular hydrogen bonding for the induction of liquid crystallinity in the side chain of polysiloxanes

TL;DR: In this article, a new type of liquid crystalline side chain polysiloxane has been built through self-assembly via intermolecular hydrogen bonding between H-bond donor and acceptor moieties.
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Improved Carbon‐Carbon Linking by Controlled Copper Catalysis

TL;DR: Treatment of RO3SC6H4Me-4 with R1MgBr in THF over Li2CuCl4 at -78 Deg with slowly raising the temp to room temp. gave, in good yields, the derivs as discussed by the authors.
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The low-temperature, ionic Diels-Alder addition of vinyl ortho esters to 1,3-dienes

TL;DR: L'orthoacrylate de triethyle reagit sur des dienes-1,3 aliphatiques ou monocycliques pour donner des cyclohexenes carboxylates d'ethyle pour les premiers et bicyclenecarboxylate d'thyle for les seconds as mentioned in this paper.
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