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Search for "Morita–Baylis–Hillman" in Full Text gives 51 result(s) in Beilstein Journal of Organic Chemistry.

Molecular diversity of the reactions of MBH carbonates of isatins and various nucleophiles

  • Zi-Ying Xiao,
  • Jing Sun and
  • Chao-Guo Yan

Beilstein J. Org. Chem. 2025, 21, 286–295, doi:10.3762/bjoc.21.21

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  • , the readily available MoritaBaylisHillman (MBH) carbonates of isatins have been recognized as one of the most powerful synthons for the construction of various spirooxindole skeletons [16][17][18][19][20][21][22][23][24][25]. MBH carbonates of isatins can be easily obtained via base-promoted MBH
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Published 06 Feb 2025

Recent advances in transition-metal-free arylation reactions involving hypervalent iodine salts

  • Ritu Mamgain,
  • Kokila Sakthivel and
  • Fateh V. Singh

Beilstein J. Org. Chem. 2024, 20, 2891–2920, doi:10.3762/bjoc.20.243

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  • MoritaBaylisHillman (MBH) acetates using a variety of diaryliodonium triflates [65]. The reaction was carried out with MBH acetate 33 and diphenyliodonium triflate 16 in the presence of different photocatalysts and bases. Methylene blue trihydrate (MB·3H2O) was identified as a highly active
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Published 13 Nov 2024

Asymmetric organocatalytic synthesis of chiral homoallylic amines

  • Nikolay S. Kondratyev and
  • Andrei V. Malkov

Beilstein J. Org. Chem. 2024, 20, 2349–2377, doi:10.3762/bjoc.20.201

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  • -trifluoromethylamine derivatives of high molecular complexity (Scheme 28). The process involves a highly enantioselective reaction of the isatin-derived MoritaBaylisHillman carbonate 137 with a novel α-CF3-substituted imine 136, derived from inexpensive benzothiophene-2,3-dione. A C2-symmetrical cinchona-derived
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Published 16 Sep 2024

Catalysing (organo-)catalysis: Trends in the application of machine learning to enantioselective organocatalysis

  • Stefan P. Schmid,
  • Leon Schlosser,
  • Frank Glorius and
  • Kjell Jorner

Beilstein J. Org. Chem. 2024, 20, 2280–2304, doi:10.3762/bjoc.20.196

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Published 10 Sep 2024

Diastereoselective synthesis of highly substituted cyclohexanones and tetrahydrochromene-4-ones via conjugate addition of curcumins to arylidenemalonates

  • Deepa Nair,
  • Abhishek Tiwari,
  • Banamali Laha and
  • Irishi N. N. Namboothiri

Beilstein J. Org. Chem. 2024, 20, 2016–2023, doi:10.3762/bjoc.20.177

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  • ][30]. The reaction of curcumins with azodicarboxylates, MoritaBaylisHillman derived nitroallylic acetates and α-hydrazinonitroalkenes were also investigated [29][31][32]. Very recently, our group has exploited 3-olefinic oxindoles and nitrochromenes to unfold the reactivities of curcumins [33][34
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Published 15 Aug 2024

Synthesis of 2-benzyl N-substituted anilines via imine condensation–isoaromatization of (E)-2-arylidene-3-cyclohexenones and primary amines

  • Lu Li,
  • Na Li,
  • Xiao-Tian Mo,
  • Ming-Wei Yuan,
  • Lin Jiang and
  • Ming-Long Yuan

Beilstein J. Org. Chem. 2024, 20, 1468–1475, doi:10.3762/bjoc.20.130

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  • MoritaBaylisHillman (MBH) adducts [20][21], we were interested in further utilizing (E)-2-arylidene-3-cyclohexenones that can be facilely synthesized from MBH alcohols to build functionalized molecules. Herein, we wish to report our preliminary study on a catalyst- and additive-free synthesis of 2
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Published 02 Jul 2024

Switchable molecular tweezers: design and applications

  • Pablo Msellem,
  • Maksym Dekthiarenko,
  • Nihal Hadj Seyd and
  • Guillaume Vives

Beilstein J. Org. Chem. 2024, 20, 504–539, doi:10.3762/bjoc.20.45

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Published 01 Mar 2024

Using the phospha-Michael reaction for making phosphonium phenolate zwitterions

  • Matthias R. Steiner,
  • Max Schmallegger,
  • Larissa Donner,
  • Johann A. Hlina,
  • Christoph Marschner,
  • Judith Baumgartner and
  • Christian Slugovc

Beilstein J. Org. Chem. 2024, 20, 41–51, doi:10.3762/bjoc.20.6

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  • powerful tool for performing organic reactions [1] and polymerizations [2]. In this context phosphines have proven to be potent Lewis-base catalysts [3][4] for a variety of reactions [5], including but not limited to Rauhut–Currier [6], MoritaBaylisHillman [7], and Michael reactions [8][9][10]. In all
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Published 10 Jan 2024

Construction of diazepine-containing spiroindolines via annulation reaction of α-halogenated N-acylhydrazones and isatin-derived MBH carbonates

  • Xing Liu,
  • Wenjing Shi,
  • Jing Sun and
  • Chao-Guo Yan

Beilstein J. Org. Chem. 2023, 19, 1923–1932, doi:10.3762/bjoc.19.143

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  • the synthesis of spirooxindole derivatives continues to be a highly active subject in organic synthesis [31][32][33][34][35]. In recent years, the readily available isatin-derived MoritaBaylisHillman (MBH) carbonates have become one of the most powerful reagents for the construction of diverse
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Published 18 Dec 2023

N-Sulfenylsuccinimide/phthalimide: an alternative sulfenylating reagent in organic transformations

  • Fatemeh Doraghi,
  • Seyedeh Pegah Aledavoud,
  • Mehdi Ghanbarlou,
  • Bagher Larijani and
  • Mohammad Mahdavi

Beilstein J. Org. Chem. 2023, 19, 1471–1502, doi:10.3762/bjoc.19.106

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  • MoritaBaylisHillman carbonates from isatins by using a Lewis base catalytic system (Scheme 52) [84]. Screening several organocatalysts showed that the 1,3-oxo-ethynylation of starting materials with silylethynyl-1,2-benziodoxol-3(1H)-ones 123 was obtained by using catalyst N, while 1,3
  • conjugate Lewis base Brønsted acid catalyst. Sulfenylation of deconjugated butyrolactams. Intramolecular sulfenofunctionalization of alkenes with phenols. Organocatalytic 1,3-difunctionalizations of MoritaBaylisHillman carbonates. Organocatalytic sulfenylation of β‑naphthols. Acid-promoted
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Published 27 Sep 2023

Metal catalyst-free N-allylation/alkylation of imidazole and benzimidazole with Morita–Baylis–Hillman (MBH) alcohols and acetates

  • Olfa Mhasni,
  • Jalloul Bouajila and
  • Farhat Rezgui

Beilstein J. Org. Chem. 2023, 19, 1251–1258, doi:10.3762/bjoc.19.93

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  • performed using DABCO as an additive, leading to the corresponding 1,4-adducts in 70–84% yields. Keywords: allylic substitution; aza-Michael addition; imidazole; MoritaBaylisHillman; Introduction MoritaBaylisHillman (MBH) adducts are multifunctionalized compounds having both a hydroxy moiety and a
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Published 01 Sep 2023

Selective construction of dispiro[indoline-3,2'-quinoline-3',3''-indoline] and dispiro[indoline-3,2'-pyrrole-3',3''-indoline] via three-component reaction

  • Ziying Xiao,
  • Fengshun Xu,
  • Jing Sun and
  • Chao-Guo Yan

Beilstein J. Org. Chem. 2023, 19, 1234–1242, doi:10.3762/bjoc.19.91

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  • [12][13][14][15]. On the other hand, MoritaBaylisHillman (MBH) carbonates of isatins, which could be easily prepared by the MBH reactions of isatins with acrylonitrile or alkyl acrylates also became valuable synthons [16][17][18][19][20][21][22][23][24][25]. The active 3-methyleneoxindoles could act
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Published 22 Aug 2023

Morita–Baylis–Hillman reaction of 3-formyl-9H-pyrido[3,4-b]indoles and fluorescence studies of the products

  • Nisha Devi and
  • Virender Singh

Beilstein J. Org. Chem. 2022, 18, 926–934, doi:10.3762/bjoc.18.92

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  • medicinal importance is the reason that the synthesis of β-carboline-containing derivatives has been an exciting area for researchers [34][35][36][37][38][39][40]. The MoritaBaylisHillman (MBH) reaction is an astonishing C–C bond forming reaction between a carbonyl electrophile and an activated alkene
  • group has also investigated the scope of 1-formyl-β-carbolines for generating unique molecular hybrids by application of the MoritaBaylisHillman reaction [48][49][50]. It was also revealed from a detailed literature survey that only limited reports have been documented toward exploration of 3-formyl
  • methodology is decorated with several advantages like scalability and selectivity. Additionally, no column chromatographic purification was required at any stage and each step was high yielding. After the synthesis of starting materials, the MoritaBaylisHillman reaction was explored for C-3
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Published 26 Jul 2022

Direct C(sp3)–H allylation of 2-alkylpyridines with Morita–Baylis–Hillman carbonates via a tandem nucleophilic substitution/aza-Cope rearrangement

  • Siyu Wang,
  • Lianyou Zheng,
  • Shutao Wang,
  • Shulin Ning,
  • Zhuoqi Zhang and
  • Jinbao Xiang

Beilstein J. Org. Chem. 2021, 17, 2505–2510, doi:10.3762/bjoc.17.167

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  • (sp3)–H allylic alkylation of 2-alkylpyridines with MoritaBaylisHillman (MBH) carbonates is described. A plausible mechanism of the reaction might involve a tandem SN2’ type nucleophilic substitution followed by an aza-Cope rearrangement. Various alkyl substituents on 2-alkylpyridines were tolerated
  • ; MoritaBaylisHillman carbonates; Introduction Pyridines are among the most important heterocyclic structural moieties in many biologically active natural products, pharmaceuticals, and agrochemicals [1][2][3]. Therefore, the development of efficient strategies for functionalized pyridine derivatives
  • acetamides and acetates catalyzed synergistically by a metal acyclic iridium complex and a chiral Cu(I) complex [19]. Besides transition-metal-catalyzed allylic substitution reactions, Lewis-base-catalyzed allylic functionalizations using MoritaBaylisHillman (MBH) adducts as electrophilic allylic
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Published 01 Oct 2021

Facile and innovative catalytic protocol for intramolecular Friedel–Crafts cyclization of Morita–Baylis–Hillman adducts: Synergistic combination of chiral (salen)chromium(III)/BF3·OEt2 catalysis

  • Karthikeyan Soundararajan,
  • Helen Ratna Monica Jeyarajan,
  • Raju Subimol Kamarajapurathu and
  • Karthik Krishna Kumar Ayyanoth

Beilstein J. Org. Chem. 2021, 17, 2186–2193, doi:10.3762/bjoc.17.140

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  • .17.140 Abstract The chiral (salen)Cr(III)/BF3·OEt2 catalytic combination was found to be an effective catalyst for intramolecular Friedel–Crafts cyclization of electron-deficient MoritaBaylisHillman adducts. In presence of mild reaction conditions the chiral (salen)Cr(III)/BF3·OEt2 complex affords 2
  • -substituted-1H-indenes from unique substrates of MoritaBaylisHillman adducts via an easy operating practical procedure. Keywords: boron trifluoride etherate; chiral (salen)chromium(III); intramolecular Friedel–Crafts cyclization; MoritaBaylisHillman adducts; substituted-1H-indenes; Introduction
  • -deficient arenes [4][5][6][7]. Operating FC reactions in versatile synthons such as MoritaBaylisHillman (MBH) adducts is a challenging process. Inter/intramolecular Friedel–Crafts reactions of MoritaBaylisHillman adducts leads to a variety of products such as quinolinones [8], cycloheptene-6
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Published 26 Aug 2021

Asymmetric organocatalyzed synthesis of coumarin derivatives

  • Natália M. Moreira,
  • Lorena S. R. Martelli and
  • Arlene G. Corrêa

Beilstein J. Org. Chem. 2021, 17, 1952–1980, doi:10.3762/bjoc.17.128

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  • gram-scale experiment, affording the desired product 21a with excellent yield and ee (Scheme 6b). Ren et al. reported an enantioselective reaction of cyclopent-2-enone-derived MoritaBaylisHillman (MBH) alcohols 24 with 4-hydroxycoumarins 1 catalyzed by a chiral primary amine derived from
  • described an allylic alkylation reaction between 3-cyano-4-methylcoumarins 39 and MoritaBaylisHillman (MBH) carbonates 40 [45]. In this case, the catalyst (DHQ)2PYR 42 activates the MBH substrate and generates the dienolate in the vinylogous coumarin moiety, acting as a base. After the nucleophilic
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Published 03 Aug 2021

Sustainable manganese catalysis for late-stage C–H functionalization of bioactive structural motifs

  • Jongwoo Son

Beilstein J. Org. Chem. 2021, 17, 1733–1751, doi:10.3762/bjoc.17.122

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  • cyclic peptide motif (Scheme 11). Dipeptide substrate 26f decorated with a MoritaBaylisHillman carbonate underwent the intramolecular C–H allylation process to yield cyclic peptide 28f under dilute reaction conditions. This macrocyclization strategy introduces an exocyclic olefin motif onto the cyclic
  • peptide, which can be further utilized as a Michael acceptor for a variety of nucleophiles. Based on their manganese-catalyzed allylation using MoritaBaylisHillman carbonates, the Ackermann group established an applicable late-stage C–H glycosylation of peptides (Scheme 12) [95]. Thus, allylative
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Published 26 Jul 2021

Electron-rich triarylphosphines as nucleophilic catalysts for oxa-Michael reactions

  • Susanne M. Fischer,
  • Simon Renner,
  • A. Daniel Boese and
  • Christian Slugovc

Beilstein J. Org. Chem. 2021, 17, 1689–1697, doi:10.3762/bjoc.17.117

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  • chemistry; organocatalysis; phosphine; solvent-free synthesis; Introduction Phosphines are potent nucleophiles that are used as catalysts in many reactions, like Rauhut–Currier, MoritaBaylisHillman or Michael reactions [1][2][3]. The first step of these reactions is a conjugate addition of the phosphine
  • -donating groups (e.g., -CH3, -OMe, -NMe2) at the aryl moieties. In this way, the electron density on the phosphorous and thus the nucleophilicity is increased. This strategy has for example been exploited in the reaction of ethyl acrylate with 4-nitrobenzaldehyde [16], in aza-MoritaBaylisHillman
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Published 21 Jul 2021

Methodologies for the synthesis of quaternary carbon centers via hydroalkylation of unactivated olefins: twenty years of advances

  • Thiago S. Silva and
  • Fernando Coelho

Beilstein J. Org. Chem. 2021, 17, 1565–1590, doi:10.3762/bjoc.17.112

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  • employing the gem-disubstituted substrate 42 to obtain 43 in excellent yield and with a slightly better reaction time (1.5 days). Under improved conditions using stoichiometric amounts of vanadium hydride, the unprotected MoritaBaylisHillman alcohol 44 was subjected to cyclization to furnish 45 in good
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Published 07 Jul 2021

Azidophosphonium salt-directed chemoselective synthesis of (E)/(Z)-cinnamyl-1H-triazoles and regiospecific access to bromomethylcoumarins from Morita–Baylis–Hillman adducts

  • Soundararajan Karthikeyan,
  • Radha Krishnan Shobana,
  • Kamarajapurathu Raju Subimol,
  • J. Helen Ratna Monica and
  • Ayyanoth Karthik Krishna Kumar

Beilstein J. Org. Chem. 2020, 16, 1579–1587, doi:10.3762/bjoc.16.130

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  • , Madurai, Tamil Nadu, India 10.3762/bjoc.16.130 Abstract The direct transformation of MoritaBaylisHillman (MBH) adducts into molecules of interest is a crucial process wherein allylic hydroxy-protected or halogenated MBH adducts are commonly preferred. Herein, we report an azidophosphonium salt (AzPS
  • powerful synthetic tools. Keywords: halomethylcoumarin; MoritaBaylisHillman adducts; organocatalyst; phosphonium salt; triazolation; Introduction The presence of versatile functional groups in close proximity classifies MoritaBaylisHillman adducts as privileged key scaffolds for synthetic organic
  • ]. Among the known synthetic transformations using functionalized MBH adducts, cycloaddition reactions are challenging and attractive for synthetic organic chemists. In this context, acetate-functionalized MoritaBaylisHillman adducts have been extensively utilized over other precursors. For example
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Published 01 Jul 2020

Synthesis of novel sulfide-based cyclic peptidomimetic analogues to solonamides

  • José Brango-Vanegas,
  • Luan A. Martinho,
  • Lucinda J. Bessa,
  • Andreanne G. Vasconcelos,
  • Alexandra Plácido,
  • Alex L. Pereira,
  • José R. S. A. Leite and
  • Angelo H. L. Machado

Beilstein J. Org. Chem. 2019, 15, 2544–2551, doi:10.3762/bjoc.15.247

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  • have been synthesized via solid-phase peptide synthesis and SN2’ reaction on a MoritaBaylisHillman (MBH) residue introduced at the N-terminal of a tetrapeptide. This last step takes advantage of the electrophilic feature of the MBH residue and represents a new cyclization strategy occurring. The
  • cysteine sulfhydryl side chain to electrophilic Cβ of an O-acetylated MoritaBaylisHillman (MBH) adduct residue (Scheme 1). Despite reports describing the use of amino acid residues with nucleophilic side chains to prompt the macrocyclization of peptides and their mimetics, to the best of our knowledge
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Published 25 Oct 2019

New α- and β-cyclodextrin derivatives with cinchona alkaloids used in asymmetric organocatalytic reactions

  • Iveta Chena Tichá,
  • Simona Hybelbauerová and
  • Jindřich Jindřich

Beilstein J. Org. Chem. 2019, 15, 830–839, doi:10.3762/bjoc.15.80

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  • enantioselective reactions (mainly because of the nucleophilic center on the chiral quinuclidine skeleton) [20]. More importantly, they are a privileged class of chiral catalysts, which are well known for their use in Michael additions [21], MoritaBaylisHillman reactions [22], and aldol reactions [23], among
  • demanding cinchona groups. Additionally, some of these new CD derivatives showed promising results of up to 75% ee in the AAA reactions of MoritaBaylisHillman (MBH) carbamates and significant differences depending on the attached cinchona alkaloid (cinchonine, cinchonidine, quinine, quinidine) as well as
  • the decarboxylative asymmetric allylic amination of a MoritaBaylisHillman carbamate (10 mol % of catalyst, up to 75% ee, up to 76% isolated yield). We believe that these new CD derivatives comprising cinchona alkaloids will be suitable catalysts of other asymmetric reactions using them under green
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Published 01 Apr 2019

Sigmatropic rearrangements of cyclopropenylcarbinol derivatives. Access to diversely substituted alkylidenecyclopropanes

  • Guillaume Ernouf,
  • Jean-Louis Brayer,
  • Christophe Meyer and
  • Janine Cossy

Beilstein J. Org. Chem. 2019, 15, 333–350, doi:10.3762/bjoc.15.29

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  • substitution at C3 [63]. As illustrated with the preparation of alcohol 60, the strategy relies on a sila-MoritaBaylisHillman reaction between cyclopropenylsilane 59 and 3-phenylpropanal catalyzed by electron-rich tris(2,4,6-trimethoxyphenyl)phosphine (TTMPP) [63]. After desilylation, cyclopropenylcarbinol
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Published 05 Feb 2019

DABCO- and DBU-promoted one-pot reaction of N-sulfonyl ketimines with Morita–Baylis–Hillman carbonates: a sequential approach to (2-hydroxyaryl)nicotinate derivatives

  • Soumitra Guin,
  • Raman Gupta,
  • Debashis Majee and
  • Sampak Samanta

Beilstein J. Org. Chem. 2018, 14, 2771–2778, doi:10.3762/bjoc.14.254

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Published 02 Nov 2018

Synthesis of chiral 3-substituted 3-amino-2-oxindoles through enantioselective catalytic nucleophilic additions to isatin imines

  • Hélène Pellissier

Beilstein J. Org. Chem. 2018, 14, 1349–1369, doi:10.3762/bjoc.14.114

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  • additions to isatin imines have been developed, including Mannich reactions, aza-MoritaBaylisHillman reactions, Friedel–Crafts reactions, aza-Henry reactions, additions of heteronucleophiles, Strecker reactions, among others. The goal of this review is to update the catalytic asymmetric synthesis of
  • lowest yield (31%). The authors have proposed that the true catalyst of the reaction was a chiral tin iodide methoxide 34 in situ generated from chiral tin bromide 30, two equivalents of NaI and NaOMe (Scheme 10). Enantioselective aza-MoritaBaylisHillman reactions The MoritaBaylisHillman reaction is
  • -methylene-β-hydroxycarbonyl compounds [50][51][52][53][54][55][56]. The aza-variant of this process consists in using an activated imine instead of an aldehyde, thus affording α-methylene-β-aminocarbonyl derivatives. In 2015, Takizawa et al. developed enantioselective aza-MoritaBaylisHillman reactions of
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Published 06 Jun 2018
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