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Isolation and Reactivity of Arylnickel(II) Complexes in Nickel-Catalyzed Borylation of Aryl Fluorosulfates

Title
Isolation and Reactivity of Arylnickel(II) Complexes in Nickel-Catalyzed Borylation of Aryl Fluorosulfates
Author(s)
Sahoo, Manoj KumarLee, Jeong WooLee, SoochanChoe, WonyoungJung, ByunghyuckKwak, JaesungHong, Sung You
Issued Date
2024-04
Citation
JACS Au, v.4, no.4, pp.1646 - 1653
Type
Article
Author Keywords
nickel catalysisorganoboronsaryl fluorosulfatescomputational studiesintermediate isolation
Keywords
LIGANDIPSO-BORYLATIONPRECATALYSTHALIDESETHERSSUFEX
ISSN
2691-3704
Abstract
Aryl fluorosulfates have emerged as versatile SuFExable substrates, harnessing the reactivity of the S-F bond. In this study, we unveil their alternative synthetic utility in nickel-catalyzed borylation via C-O bond activation. This method highlights mild reaction conditions, a broad substrate scope, and moderate functional group tolerance, rendering it a practical and appealing approach for synthesizing a diverse array of aryl boronate esters. Furthermore, computational analysis sheds light on the reaction pathways, uncovering the participation of LNi(0) and LNi(II)ArX species. This insight is supported by the 31P NMR reaction monitoring along with isolation and single-crystal X-ray structural elucidation of well-defined arylnickel(II) intermediates obtained from the oxidative addition of aryl fluorosulfates. A comprehensive investigation, merging experimental and computational approaches, deepens our understanding of the alternative reactivity of SuFExable substrates. © 2024 The Authors. Published by American Chemical Society.
URI
http://hdl.handle.net/20.500.11750/56902
DOI
10.1021/jacsau.4c00128
Publisher
American Chemical Society
Related Researcher
  • 정병혁 Jung, Byunghyuck
  • Research Interests Organic Synthesis; Organo-transition metal chemistry; Catalytic Asymmetric Synthesis; Synthetic Methodologies; Synthesis of Natural Products and Drugs
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Appears in Collections:
Department of Physics and Chemistry Asymmetric Organic Synthesis and Drug Synthesis Laboratory 1. Journal Articles

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