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Search for "Horner–Wadsworth–Emmons reaction" in Full Text gives 32 result(s) in Beilstein Journal of Organic Chemistry.

(Bio)isosteres of ortho- and meta-substituted benzenes

  • H. Erik Diepers and
  • Johannes C. L. Walker

Beilstein J. Org. Chem. 2024, 20, 859–890, doi:10.3762/bjoc.20.78

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  • homologation and hydrolysis led to aldehyde (±)-46 which could then be oxidised to acid (±)-47 using a Pinnick oxidation. BCH 42b also led to ester (±)-48 via a HornerWadsworthEmmons reaction followed by hydrogenation of the formed alkene. 1,2-BCH 44 could be turned into amine (±)-49 by oxime formation and
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Published 19 Apr 2024

Combretastatins D series and analogues: from isolation, synthetic challenges and biological activities

  • Jorge de Lima Neto and
  • Paulo Henrique Menezes

Beilstein J. Org. Chem. 2023, 19, 399–427, doi:10.3762/bjoc.19.31

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  • synthesis of combretastatin D-1 (1) using the flash vacuum pyrolysis (FVP) technique, which consisted on the contraction of 16-membered sulfone derivatives, by extrusion of sulfur dioxide [58]. The synthesis of the required sulfone was initiated by a HornerWadsworthEmmons reaction between the aldehyde 52
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Published 29 Mar 2023

Sequential hydrozirconation/Pd-catalyzed cross coupling of acyl chlorides towards conjugated (2E,4E)-dienones

  • Benedikt Kolb,
  • Daniela Silva dos Santos,
  • Sanja Krause,
  • Anna Zens and
  • Sabine Laschat

Beilstein J. Org. Chem. 2023, 19, 176–185, doi:10.3762/bjoc.19.17

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  • condensation of enals 6 with aldehydes 7a or ketones 7b [6][7][8][9][10][11], isomerization of alkynones 8 [12][13][14][15], HornerWadsworthEmmons reaction of unsaturated phosphonates 9 and aldehydes 10 [16][17], and dehydrogenation of enones 11 [18]. Further, Claisen rearrangement of vinyl propargylic
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Published 17 Feb 2023
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  • in a Michael addition with methyl acrylate, affording aldehyde 4 (Scheme 1). Instead of the original Wittig reaction [13], a HornerWadsworthEmmons reaction using diethyl (2-methylallyl)phosphonate and BuLi led to a higher yield and formation of the pure (E)-isomer 5. The required phosphonate was
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Published 16 Feb 2023

Catalytic aza-Nazarov cyclization reactions to access α-methylene-γ-lactam heterocycles

  • Bilge Banu Yagci,
  • Selin Ezgi Donmez,
  • Onur Şahin and
  • Yunus Emre Türkmen

Beilstein J. Org. Chem. 2023, 19, 66–77, doi:10.3762/bjoc.19.6

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  • starting from the commercially available triethyl phosphonoacetate (14, Scheme 2a). The deprotonation of 14 with NaH followed by alkylation using (iodomethyl)trimethylsilane afforded phosphonate 15 in 60% yield (7.0 g). Its subsequent HornerWadsworthEmmons reaction with isovaleraldehyde resulted in the
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Published 17 Jan 2023

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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  • group on C6 was introduced after cyclopropane ring-opening, ketone protection, epoxidation and reductive ring-opening of the resulting epoxide. A one-pot β-keto phosphonate formation/HornerWadsworthEmmons reaction with formaldehyde afforded 38, a precursor for the key oxidative dearomatization-induced
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Published 12 Dec 2022

Vicinal ketoesters – key intermediates in the total synthesis of natural products

  • Marc Paul Beller and
  • Ulrich Koert

Beilstein J. Org. Chem. 2022, 18, 1236–1248, doi:10.3762/bjoc.18.129

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  • ]. The α-ketoester 41 was accessible from amide 38, which in turn was obtained from allylic alcohol 37. Oxidation and HornerWadsworthEmmons reaction with phosphonate 39 delivered the silyl enol ether 40, which was deprotected and cyclized via a Grubbs metathesis to α-ketoester 41. Subsequent
  • was synthesized by a HornerWadsworthEmmons reaction of phosphonate 48 with aldehyde 47. Enantiopure aldehyde 47 was easily accessible from oxazolidinone 46 via Evans-aldol chemistry [23]. Heating of the α-ketoester 49 led to the highly substituted cyclopentanol 50 in a good dr of ≈5:1 (minor
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Published 15 Sep 2022

The stereochemical course of 2-methylisoborneol biosynthesis

  • Binbin Gu,
  • Anwei Hou and
  • Jeroen S. Dickschat

Beilstein J. Org. Chem. 2022, 18, 818–824, doi:10.3762/bjoc.18.82

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  • . Results and Discussion Enantioselective synthesis of 2-methyllinalyl diphosphate The synthesis of (R)- and (S)-2-Me-LPP started with the HornerWadsworthEmmons reaction [34][35] of sulcatone (2) with triethyl 2-phosphonopropionate to obtain ethyl 2-methylgeranate (3) as a mixture of the E and Z
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Published 08 Jul 2022

A comprehensive review of flow chemistry techniques tailored to the flavours and fragrances industries

  • Guido Gambacorta,
  • James S. Sharley and
  • Ian R. Baxendale

Beilstein J. Org. Chem. 2021, 17, 1181–1312, doi:10.3762/bjoc.17.90

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Published 18 May 2021

Facile synthesis of 7-alkyl-1,2,3,4-tetrahydro-1,8-naphthyridines as arginine mimetics using a Horner–Wadsworth–Emmons-based approach

  • Rhys A. Lippa,
  • John A. Murphy and
  • Tim N. Barrett

Beilstein J. Org. Chem. 2020, 16, 1617–1626, doi:10.3762/bjoc.16.134

Graphical Abstract
  • the Wittig step presented complications on both gram and kilogram scales. Herein, we report a novel synthetic sequence to tetrahydro-1,8-naphthyridines using a HornerWadsworthEmmons reaction using diphosphorylated compound 7, proceeding in high yields and high purities without the need for
  • would afford phosphonate 12 upon quenching with diethyl chlorophosphate via formation of the dianion. This could then be used in a subsequent HornerWadsworthEmmons reaction to construct the carbon skeleton of amine 6. Upon the addition of a single equivalent of diethyl chlorophosphate, phosphoramidate
  • integrin inhibitors. Commonly used synthetic routes to tetrahydro-1,8-naphthyridine moieties by hydrogenation of saturated naphthyridines 3. Previous synthetic route to fluoropyrrolidine 6 utilising a Wittig reaction and the novel, higher yielding route using a HornerWadsworthEmmons reaction. Synthesis
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Published 08 Jul 2020

Volatiles from the tropical ascomycete Daldinia clavata (Hypoxylaceae, Xylariales)

  • Tao Wang,
  • Kathrin I. Mohr,
  • Marc Stadler and
  • Jeroen S. Dickschat

Beilstein J. Org. Chem. 2018, 14, 135–147, doi:10.3762/bjoc.14.9

Graphical Abstract
  • WadsworthEmmons reaction with triethyl 2-phosphonopropionate (19) yielded ethyl (E)-2,4-dimethylhex-2-enoate (20) as a separable mixture of E and Z stereoisomers (E/Z = 10:1). The purified E diastereomer was reduced with DIBAl-H to the corresponding alcohol 21. A PCC oxidation and addition of
  • (Figure 2A) that was similar to a data base spectrum of manicone ((E)-4,6-dimethyloct-4-en-3-one, 10), but no retention index for this compound was available from the literature. For unambiguous structural verification compound 10 was synthesised starting from 2-methylbutanal (18, Scheme 3). A Horner
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Published 12 Jan 2018

The photodecarboxylative addition of carboxylates to phthalimides as a key-step in the synthesis of biologically active 3-arylmethylene-2,3-dihydro-1H-isoindolin-1-ones

  • Ommid Anamimoghadam,
  • Saira Mumtaz,
  • Anke Nietsch,
  • Gaetano Saya,
  • Cherie A. Motti,
  • Jun Wang,
  • Peter C. Junk,
  • Ashfaq Mahmood Qureshi and
  • Michael Oelgemöller

Beilstein J. Org. Chem. 2017, 13, 2833–2841, doi:10.3762/bjoc.13.275

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  • and co-workers and incorporated an intramolecular HornerWadsworthEmmons reaction as a crucial step [10]. Due to their diverse biological activities, a variety of synthetic pathways to 3-arylmethylene-2,3-dihydro-1H-isoindolin-1-ones has been developed over the past two decades [10][11][12][13][14
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Published 20 Dec 2017

Total syntheses of the archazolids: an emerging class of novel anticancer drugs

  • Stephan Scheeff and
  • Dirk Menche

Beilstein J. Org. Chem. 2017, 13, 1085–1098, doi:10.3762/bjoc.13.108

Graphical Abstract
  • alcohol 49 in 76% over 2 steps [83]. Before TBS protection the Weinreb amide was generated and then conversed into the phosphonate 50 as a precursor for a HornerWadsworthEmmons reaction. The olefination led to unsaturated ketone 52 in 79% yield. For the final fragment synthesis the ketone was reduced
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Published 07 Jun 2017

Multicomponent reactions: A simple and efficient route to heterocyclic phosphonates

  • Mohammad Haji

Beilstein J. Org. Chem. 2016, 12, 1269–1301, doi:10.3762/bjoc.12.121

Graphical Abstract
  • dephosphorylated by treatment with lithium aluminum hydride to give isoindolin-1-ones 61 (Scheme 15). Also the Kabachnik–Fields reaction of formylbenzoic acid (55), dimethyl phosphonate and amines 62 or 66 followed by subsequent HornerWadsworthEmmons reaction of the resulting cycloadducts 63 and 67 with
  • isoindolin-1-one-3-phosphonates. A microwave-assisted Kabachnik–Fields reaction toward isoindolin-1-ones. The synthesis of 3-arylmethyleneisoindolin-1-ones through a HornerWadsworthEmmons reaction of Kabachnik–Fields reaction products. An efficient one-pot method for the synthesis of ethyl (2-alkyl- and 2
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Published 21 Jun 2016

Efficient syntheses of climate relevant isoprene nitrates and (1R,5S)-(−)-myrtenol nitrate

  • Sean P. Bew,
  • Glyn D. Hiatt-Gipson,
  • Graham P. Mills and
  • Claire E. Reeves

Beilstein J. Org. Chem. 2016, 12, 1081–1095, doi:10.3762/bjoc.12.103

Graphical Abstract
  • ester via a HornerWadsworthEmmons reaction caught our attention [47]. Changing tack and in a slightly modified procedure to that originally reported by Fujiwara et al. triethyl phosphonoacetate was deprotonated (NaH) and the resulting stabilised ylide (not shown) reacted by slow addition of
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Published 27 May 2016

Regiodefined synthesis of brominated hydroxyanthraquinones related to proisocrinins

  • Joyeeta Roy,
  • Tanushree Mal,
  • Supriti Jana and
  • Dipakranjan Mal

Beilstein J. Org. Chem. 2016, 12, 531–536, doi:10.3762/bjoc.12.52

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  • signals corresponding to two protons of the epoxide at δ 4.18 and 3.54 [44]. Since the yield of 32 was low, we considered a HornerWadsworthEmmons reaction of aldehyde 31 with triethyl phosphonoacetate as an alternative. Unfortunately, it was not successful, probably due to the interference of the
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Published 16 Mar 2016

New tris- and pentakis-fused donors containing extended tetrathiafulvalenes: New positive electrode materials for rechargeable batteries

  • Shintaro Iwamoto,
  • Yuu Inatomi,
  • Daisuke Ogi,
  • Satoshi Shibayama,
  • Yukiko Murakami,
  • Minami Kato,
  • Kazuyuki Takahashi,
  • Kazuyoshi Tanaka,
  • Nobuhiko Hojo and
  • Yohji Misaki

Beilstein J. Org. Chem. 2015, 11, 1136–1147, doi:10.3762/bjoc.11.128

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  • undesired byproducts. The homo-coupling reaction using 11 might give 12 in a good yield, however, toxic and expensive mercury(II) acetate has to be used for the synthesis of 11. Thus, the cross-coupling reaction is useful for saving 11. The HornerWadsworthEmmons reaction of 12 with 2 equiv of aldehydes
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Published 08 Jul 2015

Synthesis of the furo[2,3-b]chromene ring system of hyperaspindols A and B

  • Danielle L. Paterson and
  • David Barker

Beilstein J. Org. Chem. 2015, 11, 265–270, doi:10.3762/bjoc.11.29

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  • methylenedioxyphenyl groups in ketone 8 would be added by sequential addition of aryllithiates to both the carbonyl and aldehyde groups, derived from the terminal alkene, of a homoallylic carboxylic acid derivative 9. Our route to ketone 8 began from salicylaldehyde (10) which underwent a HornerWadsworthEmmons
  • reaction with triethylphosphonoacetate to give ester 11 [19] in 94% yield (Scheme 1). Hydrogenation of the alkene followed by protection of the phenol gave benzyl ether 12 in 88% yield over two steps. Initially the preparation of alkene 13 through the allylation of ester 12 was attempted, however keto
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Published 17 Feb 2015

Stereocontrolled synthesis of 5-azaspiro[2.3]hexane derivatives as conformationally “frozen” analogues of L-glutamic acid

  • Beatrice Bechi,
  • David Amantini,
  • Cristina Tintori,
  • Maurizio Botta and
  • Romano di Fabio

Beilstein J. Org. Chem. 2014, 10, 1114–1120, doi:10.3762/bjoc.10.110

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  • optimized by replacing step c) CH2N2 (diazomethane) with TMSCHN2 (trimethylsilyl diazomethane). This intermediate was transformed into intermediate 17 by a HornerWadsworthEmmons reaction [23][24], thereby obtaining 17 as the single E-isomer in 68% yield after purification by flash chromatography (Scheme 3
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Published 14 May 2014

Structure elucidation of female-specific volatiles released by the parasitoid wasp Trichogramma turkestanica (Hymenoptera: Trichogrammatidae)

  • Armin Tröger,
  • Teris A. van Beek,
  • Martinus E. Huigens,
  • Isabel M. M. S. Silva,
  • Maarten A. Posthumus and
  • Wittko Francke

Beilstein J. Org. Chem. 2014, 10, 767–773, doi:10.3762/bjoc.10.72

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  • investigations. In analogy to the structure of A, compound B was assigned to be (2E,4E,6S,8S,10S)-4,6,8,10-tetramethyltrideca-2,4-dien-1-ol (23) or its enantiomer. According to the procedure described by Markiewicz et al. [23], racemic 23 was prepared by vinylogous HornerWadsworthEmmons reaction of the
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Published 02 Apr 2014

Synthesis of complex intermediates for the study of a dehydratase from borrelidin biosynthesis

  • Frank Hahn,
  • Nadine Kandziora,
  • Steffen Friedrich and
  • Peter F. Leadlay

Beilstein J. Org. Chem. 2014, 10, 634–640, doi:10.3762/bjoc.10.55

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  • should be accessible from aldehyde 11 through a HornerWadsworthEmmons reaction and the Still–Gennari olefination as well as by a Wittig olefination with stabilised phosphoranes, respectively. The aldehyde 11 should be accessible from the known molecule 13 via 12 [15]. Synthesis of the common precursor
  • assay mixture, the latter will be transformed into their corresponding methyl esters by saponification and following methylation with trimethylsilyldiazomethane. The fully protected E-isomer 10a was obtained in 18% yield by a HornerWadsworthEmmons reaction with phosphonate 25 or, alternatively, in 64
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Published 11 Mar 2014

Synthesis of five- and six-membered cyclic organic peroxides: Key transformations into peroxide ring-retaining products

  • Alexander O. Terent'ev,
  • Dmitry A. Borisov,
  • Vera A. Vil’ and
  • Valery M. Dembitsky

Beilstein J. Org. Chem. 2014, 10, 34–114, doi:10.3762/bjoc.10.6

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Published 08 Jan 2014

Garner’s aldehyde as a versatile intermediate in the synthesis of enantiopure natural products

  • Mikko Passiniemi and
  • Ari M.P. Koskinen

Beilstein J. Org. Chem. 2013, 9, 2641–2659, doi:10.3762/bjoc.9.300

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  • reactive compared to their non-stabilized counterparts, they tend to epimerize the existing chiral center of 1 a lot less, if at all (pKaH value of 69 in DMSO is 8.5 compared to the pKa value of Ph3(Me)PBr, which is 22.5) [109]. Another method to prepare α,β-unsaturated esters is the HornerWadsworth
  • Emmons reaction (HWE). The HWE reaction has many advantages over the Wittig olefination. The phosphonate anions tend to be more nucleophilic (less basic) than the corresponding phosphorous ylides. The byproducts, dialkyl phosphates are water soluble and hence easier to remove from the product compared to
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Published 26 Nov 2013

Cyclopamine analogs bearing exocyclic methylenes are highly potent and acid-stable inhibitors of hedgehog signaling

  • Johann Moschner,
  • Anna Chentsova,
  • Nicole Eilert,
  • Irene Rovardi,
  • Philipp Heretsch and
  • Athanassios Giannis

Beilstein J. Org. Chem. 2013, 9, 2328–2335, doi:10.3762/bjoc.9.267

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  • became accessible. Partial reduction to the lactol (DIBAl-H, THF, −78 °C to −65 °C, 88%) and HornerWadsworthEmmons reaction by using previously reported dimethyl {3-[(4-methoxybenzyl)oxy]-2-oxopropyl}phosphonate [32], (Ba(OH)2, THF/H2O, 80 °C, 50%) led to 15 which, in turn, was methylenated by
  • %) and the benzenesulfonylamine (sodium naphthalenide, DME, −78 °C, 95%) gave 20-demethyl-bis-exo-cyclopamine 19 in 7% overall yield starting from 14. Starting from azido lactone 14 (see Scheme 2) a partial reduction to the lactol (DIBAl-H, THF, −78 °C to −65 °C, 88%) and the HornerWadsworthEmmons
  • reaction by using triethyl phosphonoacetate (Ba(OH)2, THF/H2O, 80 °C, 55%) led to ethyl ester 20. Reduction of the azide moiety in 20 was carried out by using Staudinger’s protocol (Ph3P, THF/H2O, 50 °C). Immediate protection of the obtained amine (benzenesulfonyl chloride, Et3N, CH2Cl2, 40 °C, 97% over 2
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Published 31 Oct 2013

The chemistry of isoindole natural products

  • Klaus Speck and
  • Thomas Magauer

Beilstein J. Org. Chem. 2013, 9, 2048–2078, doi:10.3762/bjoc.9.243

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  • olefination. Installation of the phosphonate and desilylation gave 76, which, after oxidation, reacted in the presence of sodium 2,2,2-trifluoroethanol (NaOTFE) in 2,2,2-trifluoroethanol (TFE) via an intramolecular HornerWadsworthEmmons reaction to 77. Cytochalasin L-696,474 (78) was obtained from 77 via
  • sequence. The asymmetric intramolecular Diels–Alder reaction was then catalyzed by Kristensens’ catalyst (201) to give 202. A base-promoted epimerization of the aldehyde and a HornerWadsworthEmmons reaction furnished 203, the most advanced intermediate reported so far. Just recently, the group of
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Published 10 Oct 2013
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