Electrophilic Sulfur Reagent Design Enables Catalytic syn-Carbosulfenylation of Unactivated Alkenes

03 December 2021, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

A multi-component approach to structurally complex organosulfur products is described via the nickel-catalyzed 1,2-carbosulfenylation of unactivated alkenes with organoboron nucleophiles and tailored organosulfur electrophiles. Key to the development of this transformation is the identification of a modular N-alkyl-N-(arylsulfenyl)arenesulfonamide family of sulfur electrophiles. Tuning the electronic and steric properties of the leaving group in these reagents controls pathway selectivity, favoring three-component coupling and suppressing side reactions, as examined via computational studies. The unique syn-stereoselectivity differs from traditional electrophilic sulfenyl transfer processes involving a thiiranium ion intermediate and arises from the directed arylnickel(I) migratory insertion mechanism, as elucidated through reaction kinetics and control experiments. Reactivity and regioselectivity are facilitated by a collection of monodentate, weakly coordinating native directing groups, including sulfonamides, alcohols, amines, amides, and azaheterocycles.

Keywords

nickel
alkene functionalization
organosulfur compound
carbosulfenylation
directing group

Supplementary materials

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Description
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Supporting Info
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experimental procedures, analytical data, computational details, copies of X-ray crystal structure reports, copies of NMR spectra
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(±)-4l’_[O].cif
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Crystallographic Information File for (±)-4l’_[O]
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(±)-6.cif
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Crystallographic Information File for (±)-6
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S6.cif
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Crystallographic Information File for S6
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S17.cif
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Crystallographic Information File for S17
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S18.cif
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Crystallographic Information File for S18
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S23.cif
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Crystallographic Information File for S23
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S28.cif
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Crystallographic Information File for S28
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