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Search for "vinyl halide" in Full Text gives 8 result(s) in Beilstein Journal of Organic Chemistry.

Total synthesis of grayanane natural products

  • Nicolas Fay,
  • Rémi Blieck,
  • Cyrille Kouklovsky and
  • Aurélien de la Torre

Beilstein J. Org. Chem. 2022, 18, 1707–1719, doi:10.3762/bjoc.18.181

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  • diastereoselectivity in 58% on a 3 g scale. Subsequently, vinyl halide 48 was converted to diene 50 by Suzuki coupling with potassium vinyltrifluoroborate (49) in 90% yield (Scheme 8). The C7–C8 bond formation from a bridgehead carbocation was a real challenge to close the 7-membered ring. To achieve this, the
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Published 12 Dec 2022

Recent developments and trends in the iron- and cobalt-catalyzed Sonogashira reactions

  • Surendran Amrutha,
  • Sankaran Radhika and
  • Gopinathan Anilkumar

Beilstein J. Org. Chem. 2022, 18, 262–285, doi:10.3762/bjoc.18.31

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  • reaction between an aryl/vinyl halide (Cl, Br, I, OTf) and a terminal alkyne in the presence of a Cu(I) co-catalyst under basic conditions to form a Csp2–Csp bond generating an arylalkyne is known as the Sonogashira (Sonogashira–Hagihara) coupling [1] and has become an important C–C bond-forming reaction
  • iodides showed good to excellent yields when coupled with phenylacetylene. The proposed mechanism is similar to the standard palladium-catalyzed Sonogashira reaction with the steps involving oxidative addition of the aryl/vinyl halide followed by transmetallation, and reductive elimination. The mechanism
  • (Scheme 15). The precatalyst FeCl2 is activated under the reaction conditions which is denoted as complex A. The reaction begins with the oxidative addition of aryl/vinyl halide forming complex B. Iron acetylide on reaction with this complex in a transmetallation step yields complex C. The resulting
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Published 03 Mar 2022

When metal-catalyzed C–H functionalization meets visible-light photocatalysis

  • Lucas Guillemard and
  • Joanna Wencel-Delord

Beilstein J. Org. Chem. 2020, 16, 1754–1804, doi:10.3762/bjoc.16.147

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Published 21 Jul 2020

A strategic approach to [6,6]-bicyclic lactones: application towards the CD fragment of DHβE

  • Tue Heesgaard Jepsen,
  • Emil Glibstrup,
  • François Crestey,
  • Anders A. Jensen and
  • Jesper Langgaard Kristensen

Beilstein J. Org. Chem. 2017, 13, 988–994, doi:10.3762/bjoc.13.98

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  • pharmacological evaluations support the notion that the key pharmacophores of DHβE are located in the A and B rings. Keywords: DhβE; Mizoroki–Heck cross-coupling reaction; 6π-electrocyclization; [6,6]-bicyclic lactone; vinyl halide; Introduction The neuronal nicotinic acetylcholine receptors (nAChRs) have been
  • the C ring by an intramolecular Mizoroki–Heck cross-coupling reaction from a Z-configured olefin which would be crucial to the stereochemical outcome of the Heck cyclization event. We envisioned a Z-stereoselective synthesis of a vinyl halide [17] which should secure the desired E-stereochemistry for
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Published 22 May 2017

Studies on the synthesis of peptides containing dehydrovaline and dehydroisoleucine based on copper-mediated enamide formation

  • Franziska Gille and
  • Andreas Kirschning

Beilstein J. Org. Chem. 2016, 12, 564–570, doi:10.3762/bjoc.12.55

Graphical Abstract
  • conjugated alkene. Principally, enamides can also be prepared by the copper-mediated C–N coupling between a vinyl halide 6 and an amide 5 as reported by Ogawa and co-workers in 1991 [6]. Later, the group of Porco showed that copper(I) thiophencarboxylate is a suitable catalyst to promote this reaction in the
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Published 22 Mar 2016

Preparation of phosphines through C–P bond formation

  • Iris Wauters,
  • Wouter Debrouwer and
  • Christian V. Stevens

Beilstein J. Org. Chem. 2014, 10, 1064–1096, doi:10.3762/bjoc.10.106

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  • coupling of several vinyl bromides 75b and chlorides with 25d (Table 10). These reactions proceeded without the addition of zinc [167]. Copper: The group of Buchwald has reported one example of a copper catalyst to accomplish the phosphination of the vinyl halide 94 (Scheme 26) [168]. The protocol uses CuI
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Published 09 May 2014

Radical zinc-atom-transfer-based carbozincation of haloalkynes with dialkylzincs

  • Fabrice Chemla,
  • Florian Dulong,
  • Franck Ferreira and
  • Alejandro Pérez-Luna

Beilstein J. Org. Chem. 2013, 9, 236–245, doi:10.3762/bjoc.9.28

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  • little impact on the efficiency and diastereoselectivity of vinyl halide formation (Table 1, entries 6 and 7). Reaction of Et2Zn with 3a provided vinyl bromide 4aa in 39% yield (78:22 Z/E ratio) and 5a in 17% yield, while reaction of n-Bu2Zn gave 4ab in 37% yield (76:24 Z/E ratio) and 5b in 12% yield. It
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Published 04 Feb 2013

Branching out at C-2 of septanosides. Synthesis of 2-deoxy-2-C-alkyl/aryl septanosides from a bromo-oxepine

  • Supriya Dey and
  • Narayanaswamy Jayaraman

Beilstein J. Org. Chem. 2012, 8, 522–527, doi:10.3762/bjoc.8.59

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  • methodology include the formation of vinyl halide, vinyl ether, diketone and diol intermediates, which are potential sites for varied types of functionalizations. While exploring such features, we undertook the preparation of septanoside derivatives that are branched out at C-2, so as to afford 2-deoxy-2-C
  • oxygen at C-2 of oxyglycal I was retained throughout until the septanoside V was obtained. More importantly, vinyl halide III and diketone IV also form as intermediates of the reaction and these intermediates provide an avenue to expand the scope of the reaction sequence. In the present work, we
  • envisaged that III would form as a synthon to implement C–C bond forming reactions. Vinyl halide 2 was synthesized through a ring-expansion reaction of cyclopropanated adduct 1 (Scheme 1), as reported previously [21]. The reactivity at C-2 of 2 was examined by the chosen organometallic reactions, namely
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Published 10 Apr 2012
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