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Search for "Wittig" in Full Text gives 194 result(s) in Beilstein Journal of Organic Chemistry.

The preparation and properties of 1,1-difluorocyclopropane derivatives

  • Kymbat S. Adekenova,
  • Peter B. Wyatt and
  • Sergazy M. Adekenov

Beilstein J. Org. Chem. 2021, 17, 245–272, doi:10.3762/bjoc.17.25

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  • Ph3P+CF2−, which was used for the Wittig olefination of aldehydes and ketones. However, heating PDFA in nonpolar solvents (e.g., xylene at 90 °C) favors the dissociation of the ylide to release difluorocarbene which is able to effect the cyclopropanation of alkenes [34]. Trimethylsilyl
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Published 26 Jan 2021

Progress in the total synthesis of inthomycins

  • Bidyut Kumar Senapati

Beilstein J. Org. Chem. 2021, 17, 58–82, doi:10.3762/bjoc.17.7

Graphical Abstract
  • required vinylstannane and iii) Stille coupling between them (Scheme 3) [39]. The required divinyl halides 36 were prepared, starting from phenylacetaldehyde (33), by using the Takai [38] or Wittig procedures [40] as shown in Scheme 3 (68% of a 3.3:1 mixture of (E,E)/(Z,E)-36b and 69% yield of a 8:1
  • followed by immediate TBS ether formation produced (+)-110a in 82% yield over 2 steps. Wittig olefination of (+)-110a with phosphonate 111 furnished the desired (E)-(+)-112a, which was then converted into Hatakeyama’s enynol (−)-82b using a four-step sequence to complete the formal synthesis of inthomycin
  • , it was transformed into (E)-vinylboronate (+)-145b in perfect stereoselectivity by using the recently developed boron-Wittig reaction with bis[(pinacolato)boryl]methane (144) [79]. By applying the Corey–Fuchs dibromoolefination and followed by Pd-catalyzed hydrogenolysis under Uenishi's conditions
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Published 07 Jan 2021

Synthesis, crystal structures and properties of carbazole-based [6]helicenes fused with an azine ring

  • Daria I. Tonkoglazova,
  • Anna V. Gulevskaya,
  • Konstantin A. Chistyakov and
  • Olga I. Askalepova

Beilstein J. Org. Chem. 2021, 17, 11–21, doi:10.3762/bjoc.17.2

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  • sp. and displaying inhibitory activities towards telomerases. The classical synthetic approach for carbohelicenes is the oxidative photocyclization of stilbene derivatives [1][2][3][4][5][6][7][8][9][10][11]. The latter are generally available via the Wittig, Heck-type or McMurry couplings. It is
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Published 04 Jan 2021

3-Acetoxy-fatty acid isoprenyl esters from androconia of the ithomiine butterfly Ithomia salapia

  • Florian Mann,
  • Daiane Szczerbowski,
  • Lisa de Silva,
  • Melanie McClure,
  • Marianne Elias and
  • Stefan Schulz

Beilstein J. Org. Chem. 2020, 16, 2776–2787, doi:10.3762/bjoc.16.228

Graphical Abstract
  • ). A Wittig reaction with pentylphosphonium bromide resulted in bromoalkene 21 in a 9:1 Z/E-mixture. In the following step, the Grignard reagent of 21 was converted into the respective Gilman cuprate with Cu(I)I for the selective reaction with the epoxide function of (S)-22 [34]. The hydroxyester 23
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Published 16 Nov 2020

Synthesis of purines and adenines containing the hexafluoroisopropyl group

  • Viacheslav Petrov,
  • Rebecca J. Dooley,
  • Alexander A. Marchione,
  • Elizabeth L. Diaz,
  • Brittany S. Clem and
  • William Marshall

Beilstein J. Org. Chem. 2020, 16, 2739–2748, doi:10.3762/bjoc.16.224

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  • relatively short list: the reduction of the OH group of the C(CF3)2OH moiety (this protocol was employed in the synthesis of enantiomerically pure (S)-5,5,5,5',5',5'-hexafluoroleucine [1]); the Wittig reaction of Ph3P=C(O)C(O)OR with hexafluoroacetone, followed by the hydrogenation of the CH=C(CF3)2 unit
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Published 11 Nov 2020

Synthetic approaches to bowl-shaped π-conjugated sumanene and its congeners

  • Shakeel Alvi and
  • Rashid Ali

Beilstein J. Org. Chem. 2020, 16, 2212–2259, doi:10.3762/bjoc.16.186

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  • context, their journey started from syn-tris(oxonorborneno)benzene 23, obtained via palladium-catalyzed cyclotrimerization of iodonorbornene. The C3-symmetric compound 23 was then converted into the methylene groups containing compound 103 using Wittig reaction which on further treatment with
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Published 09 Sep 2020

Syntheses of spliceostatins and thailanstatins: a review

  • William A. Donaldson

Beilstein J. Org. Chem. 2020, 16, 1991–2006, doi:10.3762/bjoc.16.166

Graphical Abstract
  • Kitahara’s synthesis [8][9], the Wittig olefination of 24, followed by a catalytic hydrogenation, removal of the dimethylaminal protecting group, and lactonization gave 25 as a mixture of diastereomers (Scheme 2). The further transformation of 25 afforded the dihydropyran 26, which upon catalytic
  • hydrogenation over Pt2O and then low-temperature DIBAL reduction afforded the all-cis tetrasubstituted tetrahydropyran 27. In Koide et al.’s synthesis, the unsaturated lactone 29 was prepared via the Wittig methenylation of 24, followed by aminal hydrolysis, methallylation of the 2° alcohol 28, and ring-closing
  • ] was followed by a 3-O-vinylation. A thermal 3,3-sigmatropic Claisen rearrangement of 62 gave the cis-2,6-disubstituted dihydropyran 63, which upon sequential Wittig olefination with 2-(triphenylphosporanylidene)propanal and then methylenetriphenylphosphorane yielded the diene 64. The removal of the di
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Published 13 Aug 2020

Tuneable access to indole, indolone, and cinnoline derivatives from a common 1,4-diketone Michael acceptor

  • Dalel El-Marrouki,
  • Sabrina Touchet,
  • Abderrahmen Abdelli,
  • Hédi M’Rabet,
  • Mohamed Lotfi Efrit and
  • Philippe C. Gros

Beilstein J. Org. Chem. 2020, 16, 1722–1731, doi:10.3762/bjoc.16.144

Graphical Abstract
  • the target compounds required the prior preparation of a panel of variously substituted 1,4-diketones 5. The 1,4-diketones 5 have been prepared either by a Nef reaction [56] from the corresponding nitroenone 3 or a Wittig reaction [57] from 1,2-cyclohexanedione and the corresponding ylide 4 (Scheme 2
  • route remains limited in terms of chemical diversity as it depends on the availability of the corresponding nitro derivative. It was thus decided to move on to the Wittig reaction [57], offering a much more straightforward and efficient route to a panel of new diketones, 5e–k, from 1,2-cyclohexanedione
  • and the corresponding Wittig ylides 4a–g (readily accessible from the corresponding halogenated derivatives, Scheme 2). Indeed, the Wittig reaction leads exclusively to the isomerized products 5. With the 1,4-diketones 5 in hand, we first investigated the synthesis of indole and indolone derivatives
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Published 17 Jul 2020

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
  • , GlaxoSmithKline disclosed a route to a fluoropyrrolidine 6 using a Wittig reaction between phosphonium salt 4 and aldehyde 5 [2]. The synthesis of phosphonium salt 4 (itself requiring 6 steps including partial saturation of a 1,8-naphthyridine moiety) and the formation of the triphenylphosphine oxide byproduct in
  • 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 Horner–Wadsworth–Emmons reaction using diphosphorylated compound 7, proceeding in high yields and high purities without the need for
  • defluorination, presumably via a Tsuji–Trost-like elimination of the allylic fluoride [18][19]. This sequence represents a marked improvement from the Wittig-including route, lowering the number of synthetic steps and increasing the overall yield [2]. Furthermore, no problematic byproducts are formed, and good
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Published 08 Jul 2020

An overview on disulfide-catalyzed and -cocatalyzed photoreactions

  • Yeersen Patehebieke

Beilstein J. Org. Chem. 2020, 16, 1418–1435, doi:10.3762/bjoc.16.118

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  • unsuccessful to be prepared by the Schlosser modification of the Wittig olefination (Scheme 26) [33]. A similar isomerization method was also used by Holmes in the synthesis of (−)-gloeosporone. Under irradiation conditions, diphenyl disulfide helped to convert the Z-alkene 76 to the E-alkene 77 (Scheme 27) [34
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Published 23 Jun 2020

A simple and easy to perform synthetic route to functionalized thienyl bicyclo[3.2.1]octadienes

  • Dragana Vuk,
  • Irena Škorić,
  • Valentina Milašinović,
  • Krešimir Molčanov and
  • Željko Marinić

Beilstein J. Org. Chem. 2020, 16, 1092–1099, doi:10.3762/bjoc.16.96

Graphical Abstract
  • were synthesized through Wittig reactions and subjected to photochemical cyclization, in terms of obtaining the new annulated structures. As part of this study, the aldol reaction of the starting 2-substituted carbaldehyde with acetone was also performed, which produced the thieno-fused benzobicyclo
  • [3.2.1]octadiene compound with an extended conjugation. Keywords: bicyclo[3.2.1]octadiene; photocyclization; thiophene; Vilsmeier–Haack reaction; Wittig reaction; Introduction The bicyclo[3.2.1]octane skeleton has become the subject of intensive research in recent years [1][2][3]. Its presence in
  • purification, the aldehydes 1 and 2 were obtained in very good yields (1: 79%; 2: 68%), and subsequently used as novel starting substrates for further addition/condensation reactions. The Wittig reaction of the prepared aldehydes with the corresponding triphenylphosphonium salts provided five new styryl
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Published 22 May 2020

Preparation of 2-phospholene oxides by the isomerization of 3-phospholene oxides

  • Péter Bagi,
  • Réka Herbay,
  • Nikolett Péczka,
  • Zoltán Mucsi,
  • István Timári and
  • György Keglevich

Beilstein J. Org. Chem. 2020, 16, 818–832, doi:10.3762/bjoc.16.75

Graphical Abstract
  • (III)–P(V) redox cycle, such as in catalytic Wittig-, aza-Wittig-, Staudinger-, Appel- and other reactions [16][17][18][19][20][21]. The ring strain of the four- and five-membered derivatives makes them highly susceptible to deoxygenation, thus they are ideal organocatalysts in P(III)–P(V) redox
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Published 22 Apr 2020

Combining enyne metathesis with long-established organic transformations: a powerful strategy for the sustainable synthesis of bioactive molecules

  • Valerian Dragutan,
  • Ileana Dragutan,
  • Albert Demonceau and
  • Lionel Delaude

Beilstein J. Org. Chem. 2020, 16, 738–755, doi:10.3762/bjoc.16.68

Graphical Abstract
  • to build the desired 1,3-dienic units. The advantageous association of this approach with name reactions like Grignard, Wittig, Diels–Alder, Suzuki–Miyaura, Heck cross-coupling, etc. is illustrated. Examples unveil the generality of such tandem reactions in providing not only the intricate structures
  • ][39][40][41][42][43]. In ingeniously elaborated procedures, olefin metathesis has been frequently employed as such or associated with name reactions like Grignard, Wittig, Diels–Alder, Suzuki–Miyaura, Heck, etc., resulting in the assembly of diverse intricate building blocks of the targeted structures
  • dienyne precursors in three steps, from (S)- and (R)-citronellal, through a diastereoselective Michael addition, chemoselective dibromoolefination, and a one-pot Wittig olefination/alkyne-bond formation. The enantiopure dienynes were then converted into the enantiomeric hydroazulenes in 53% and 55% yield
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Published 16 Apr 2020

Design and synthesis of diazine-based panobinostat analogues for HDAC8 inhibition

  • Sivaraman Balasubramaniam,
  • Sajith Vijayan,
  • Liam V. Goldman,
  • Xavier A. May,
  • Kyra Dodson,
  • Sweta Adhikari,
  • Fatima Rivas,
  • Davita L. Watkins and
  • Shana V. Stoddard

Beilstein J. Org. Chem. 2020, 16, 628–637, doi:10.3762/bjoc.16.59

Graphical Abstract
  • obstacle was overcome by using a modified Fieser work-up procedure to yield the aldehyde 6 in high yield, 78%. Then, aldehyde 6 was converted to the α,β-unsaturated trans-ester 7 through a Wittig reaction with the phosphorane synthon 8, which was derived from ethyl bromoacetate at 60 °C for 8 h in THF in
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Published 07 Apr 2020

Synthesis of disparlure and monachalure enantiomers from 2,3-butanediacetals

  • Adam Drop,
  • Hubert Wojtasek and
  • Bożena Frąckowiak-Wojtasek

Beilstein J. Org. Chem. 2020, 16, 616–620, doi:10.3762/bjoc.16.57

Graphical Abstract
  • synthesis of compound 15 from ʟ-dimethyl tartrate and butanone was 32%. We initially attempted to carry out the Wittig reaction of compound 15 with n-pentyltriphenylphosphonium bromide and the conditions of the individual reactions are collected in Table 1. Product 16 was obtained with various yields
  • then used in the synthesis of (+)-disparlure (1), (−)-disparlure (3), (+)-monachalure (2), and (−)-monachalure (4). First, the (+)-enantiomers 1 and 2 were synthesized (Scheme 4). In a Wittig reaction with n-nonyltriphenylphosphonium bromide followed by reduction of the double bond, the longer chain of
  • the pheromone structures was attached giving compound 20 in 74% yield. Next, removal of the protecting group from the secondary alcohol followed by a Swern oxidation gave aldehyde 21 which was subjected to Wittig reactions with either of the two different alkyl derivatives and catalytic hydrogenation
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Published 03 Apr 2020

Synthesis of 4-(2-fluorophenyl)-7-methoxycoumarin: experimental and computational evidence for intramolecular and intermolecular C–F···H–C bonds

  • Vuyisa Mzozoyana,
  • Fanie R. van Heerden and
  • Craig Grimmer

Beilstein J. Org. Chem. 2020, 16, 190–199, doi:10.3762/bjoc.16.22

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  • cross-coupling reaction [17], Negishi cross-coupling reaction [18] and Wittig reaction [17]. The concept of the incorporation of fluorine into organic molecules has gained much interest since Fried and Sabo reported the improvement of the therapeutic index of cortisol by the incorporation of a fluorine
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Published 10 Feb 2020

Synthesis of 3-alkenylindoles through regioselective C–H alkenylation of indoles by a ruthenium nanocatalyst

  • Abhijit Paul,
  • Debnath Chatterjee,
  • Srirupa Banerjee and
  • Somnath Yadav

Beilstein J. Org. Chem. 2020, 16, 140–148, doi:10.3762/bjoc.16.16

Graphical Abstract
  • following three categories: (i) by Wittig or Doebner reaction of indoles bearing a 3-aldehyde group; (ii) by 1,4- or 1,2-addition of α,β-enones or carbonyl compounds, followed by oxidation or elimination, respectively; (iii) by Pd-catalysed oxidative coupling of indoles with activated alkenes. Several
  • groups have used Wittig reactions for the synthesis of 3-alkenylindoles [13][14][15]. Another variant that uses the Doebner condensation was reported by Singh and co-worker, who condensed indole-3-carbaldehyde with phenylacetic acid in the presence of pyridine as the solvent/base and piperidine as the
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Published 29 Jan 2020

Synthesis of C-glycosyl phosphonate derivatives of 4-amino-4-deoxy-α-ʟ-arabinose

  • Lukáš Kerner and
  • Paul Kosma

Beilstein J. Org. Chem. 2020, 16, 9–14, doi:10.3762/bjoc.16.2

Graphical Abstract
  • antimicrobial drugs. C-glycosidically-linked phospholipid derivatives of 4-amino-4-deoxy-ʟ-arabinose have been prepared as hydrolytically stable and chain-shortened analogues of the native undecaprenyl donor. The C-phosphonate unit was installed via a Wittig reaction of benzyl-protected 1,5-arabinonic acid
  • ). Conversion of benzylated reducing sugars, such as glucose [15], N-acetyl-ᴅ-glucosamine [16], and galactose [17], into the corresponding C-glycosyl phosponates using a Wittig reaction with methylenetriphenylphosphorane furnished the respective glycoenitols, which were then subjected to mercuriocyclization
  • of an HMBC correlation to position H-2 of the pyranose ring. Additional interactions were also found from the olefinic proton to hydrogen atom H-2 and the O-methyl group, respectively. The preferred formation of Z-configured Wittig products fully agreed with similar results in the literature for 2-O
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Published 02 Jan 2020

1,5-Phosphonium betaines from N-triflylpropiolamides, triphenylphosphane, and active methylene compounds

  • Vito A. Fiore,
  • Chiara Freisler and
  • Gerhard Maas

Beilstein J. Org. Chem. 2019, 15, 2603–2611, doi:10.3762/bjoc.15.253

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  • -Michael reaction; propiolamides; Introduction Beside the well-known phosphonium ylides (Wittig ylides, methylenephosphoranes), various other types of zwitterions containing a tetravalent phosphonium moiety (phosphonium betaines) exist. They are often considered as reaction intermediates, but reports on
  • alkylidene phosphoranes which in turn may undergo Wittig olefination with elimination of Ph3P=O [1][5]. Recently, a study of the tributylphosphane-catalyzed reaction of ethyl 2-butynoate and ethanol by in-situ ESIMS and NMR techniques has been published [6], and mechanistic aspects of trialkylphosphane
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Published 01 Nov 2019

N-(1-Phenylethyl)aziridine-2-carboxylate esters in the synthesis of biologically relevant compounds

  • Iwona E. Głowacka,
  • Aleksandra Trocha,
  • Andrzej E. Wróblewski and
  • Dorota G. Piotrowska

Beilstein J. Org. Chem. 2019, 15, 1722–1757, doi:10.3762/bjoc.15.168

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  • -tryptophanol ((S)-41). The successful transformation of the aziridine alcohol (2S,1'R)-7 into ʟ-homophenylalaninol ((S)-42) depended on two crucial steps: the aziridine ring opening in the presence of phosgene to form the 4-(chloromethyl)oxazolidin-2-one (4R,1'R)-43 and Wittig olefination to add the benzyl
  • sources and are known as precursors to tropane alkaloids [59]. Together with (−)-pseudohygroline (2S,2'R)-62 they were synthesized from a common intermediate (2S,1'R)-63 prepared from the aldehyde (2R,1'R)-6 by Wittig olefination [60] and a regioselective C=C bond reduction (Scheme 17) [61]. N-Methylation
  • )-6 was transformed into its higher homolog (2R,1'R)-188 employing Wittig olefination, the C=C bond reduction and Swern oxidation. The required alkyl chains were introduced by Grignard reagents and mixtures of diastereoisomeric alcohols were oxidized to ketones 189a–d. Catalytic hydrogenation allowed
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Published 23 Jul 2019

Synthesis and biological evaluation of truncated derivatives of abyssomicin C as antibacterial agents

  • Leticia Monjas,
  • Peter Fodran,
  • Johanna Kollback,
  • Carlo Cassani,
  • Thomas Olsson,
  • Maja Genheden,
  • D. G. Joakim Larsson and
  • Carl-Johan Wallentin

Beilstein J. Org. Chem. 2019, 15, 1468–1474, doi:10.3762/bjoc.15.147

Graphical Abstract
  • the corresponding α-bromo esters 16 and 17, in 68% and 72% yield, respectively. Finally, intramolecular Wittig reaction of 16 or 17 in the presence of N,N-diisopropylethylamine and triphenylphosphine provided building blocks 4 and 5 in 75% and 77% yield (43% and 51% overall yields from
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Published 02 Jul 2019

Introduction of an isoxazoline unit to the β-position of porphyrin via regioselective 1,3-dipolar cycloaddition reaction

  • Xiujun Liu,
  • Xiang Ma and
  • Yaqing Feng

Beilstein J. Org. Chem. 2019, 15, 1434–1440, doi:10.3762/bjoc.15.143

Graphical Abstract
  • and Discussion The synthetic route to the β-isoxazoline-substituted porphyrin is depicted in Scheme 1, in which the double bond was furnished by Wittig reaction, followed by 1,3-dipolar cycloaddition reaction with stable dipoles. In detail, tetraphenylporphyrin (TPP) was used as starting material. A
  • the β-position, a Wittig reaction was performed, in which the porphyrin phosphonium salt 1 reacted with 4-MeCO2-benzaldehyde in the presence of DBU to furnish the double bond, followed by insertion of Zn ions into the porphyrin cavity to give compound 2. Nitrile oxides [45] as one of the most reactive
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Published 28 Jun 2019

Borylation and rearrangement of alkynyloxiranes: a stereospecific route to substituted α-enynes

  • Ruben Pomar Fuentespina,
  • José Angel Garcia de la Cruz,
  • Gabriel Durin,
  • Victor Mamane,
  • Jean-Marc Weibel and
  • Patrick Pale

Beilstein J. Org. Chem. 2019, 15, 1416–1424, doi:10.3762/bjoc.15.141

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  • .15.141 Abstract 1,3-Enynes are important building blocks in organic synthesis and also constitute the key motif in various bioactive natural products and functional materials. However, synthetic approaches to stereodefined substituted 1,3-enynes remain a challenge, as they are limited to Wittig and cross
  • -Enynes are also important building blocks in organic syntheses or platforms for further synthesis [19]. Accordingly, significant efforts have been made to develop efficient syntheses of enynes [17][18][19][20]. The most common routes relied on Wittig-type reactions [21][22] and transition-metal-catalyzed
  • , a β-boron alkoxide C is formed, which probably isomerizes to a 1,2-oxaboretanide D, a known intermediate in bora-Wittig reactions [7], whose fragmentation then stereospecifically forms the observed enyne. Conclusion To summarize, we reported here on a convenient access to stereochemically defined α
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Published 27 Jun 2019

An efficient synthesis of the guaiane sesquiterpene (−)-isoguaiene by domino metathesis

  • Yuzhou Wang,
  • Ahmed F. Darweesh,
  • Patrick Zimdars and
  • Peter Metz

Beilstein J. Org. Chem. 2019, 15, 858–862, doi:10.3762/bjoc.15.83

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  • of the aldehyde function as the dimethyl acetal [16][17][18], hydroboration and oxidative work-up of 10 provided a mixture of epimeric alcohols 11 that was unified by Ley–Griffith oxidation [19] to give ketone 12 [20]. Subsequent Wittig reaction with ylide 13 and acetal cleavage of the resultant
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Published 09 Apr 2019

The LANCA three-component reaction to highly substituted β-ketoenamides – versatile intermediates for the synthesis of functionalized pyridine, pyrimidine, oxazole and quinoxaline derivatives

  • Tilman Lechel,
  • Roopender Kumar,
  • Mrinal K. Bera,
  • Reinhold Zimmer and
  • Hans-Ulrich Reissig

Beilstein J. Org. Chem. 2019, 15, 655–678, doi:10.3762/bjoc.15.61

Graphical Abstract
  • group of the prepared intermediates allows further conversion into other functional groups as depicted in the scheme. Wittig reactions provided 4-alkenyl-substituted pyrimidine derivatives such as PM43 or PM47, whereas further oxidation of PM44 afforded the carboxylic acid PM45 in good yield [33
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Published 13 Mar 2019
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