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Search for "ketoesters" in Full Text gives 87 result(s) in Beilstein Journal of Organic Chemistry.

Enantioselective Diels–Alder reaction of anthracene by chiral tritylium catalysis

  • Qichao Zhang,
  • Jian Lv and
  • Sanzhong Luo

Beilstein J. Org. Chem. 2019, 15, 1304–1312, doi:10.3762/bjoc.15.129

Graphical Abstract
  • the carbocation precursor [20][21]. In this latent strategy, the carbocation precursor can undergo facile ionic dissociation upon mild external stimulation such as polar substrates (such as α-ketoesters) to form a catalytically active chiral ion pair for substrate activation and chiral induction
  • α-ketoesters 4 was subjected to the reaction with anthracene (3a) to give the desired cycloadducts 5a–n in moderate to good yields and with up to 93% ee. The bulkier isopropyl ketoester resulted in a lower yield and enantioselectivity (Table 2, entry 3 vs 1 and 2). Variations on the aromatic group
  • of the ketoesters were well tolerated, giving the products in decent yields and high enantioselectivities. Unfortunately, no reaction was observed when an aliphatic substituted β,γ-unsaturated α-ketoester was used (data not shown). The Diels–Alder reaction of substituted anthracenes has been well
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Published 14 Jun 2019

Alkylation of lithiated dimethyl tartrate acetonide with unactivated alkyl halides and application to an asymmetric synthesis of the 2,8-dioxabicyclo[3.2.1]octane core of squalestatins/zaragozic acids

  • Herman O. Sintim,
  • Hamad H. Al Mamari,
  • Hasanain A. A. Almohseni,
  • Younes Fegheh-Hassanpour and
  • David M. Hodgson

Beilstein J. Org. Chem. 2019, 15, 1194–1202, doi:10.3762/bjoc.15.116

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  • deprotect the TBDPS ether more slowly than FeCl3, and adjustment of the reaction conditions with AlCl3 (to 2 equiv in CH2Cl2, −78 °C, followed by slow warming to −50 °C) cleanly provided α-ketoester 20 (Scheme 6). α-Ketoesters can be prone to hydrate easily (2D TLC analysis of 20 indicated decomposition
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Published 31 May 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

Graphical Abstract
  • construction of pyridines bearing a carboxylate or CN group at C3 position has been a lucrative target for chemists due to the pharmaceutically privileged status (Figure 1). In this context, Rodriguez’s group successfully established a one-pot three-component reaction between β,γ-unsaturated α-ketoesters, 1,3
  • -dicarbonyl compounds, and ammonium acetate promoted by acid under aerobic conditions [37][38]. Furthermore, Brønsted- and Lewis-acid-catalyzed cyclization reactions between β-enamino esters (derived from β-ketoesters and ammonium acetate) and alkynones/α,β-unsaturated carbonyls/in situ generated α,β
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Published 02 Nov 2018

Microwave-assisted synthesis of biologically relevant steroidal 17-exo-pyrazol-5'-ones from a norpregnene precursor by a side-chain elongation/heterocyclization sequence

  • Gergő Mótyán,
  • László Mérai,
  • Márton Attila Kiss,
  • Zsuzsanna Schelz,
  • Izabella Sinka,
  • István Zupkó and
  • Éva Frank

Beilstein J. Org. Chem. 2018, 14, 2589–2596, doi:10.3762/bjoc.14.236

Graphical Abstract
  • of interest from a pharmacological point of view. The first and probably most frequently used method for the synthesis of pyrazolones is based on the Knorr condensation of β-ketoesters with substituted or unsubstituted hydrazines. However, these reactions often suffer from certain disadvantages, such
  • -ketoesters 4 and 4' from pregnenolone acetate (1) and pregnadienolone acetate (1'). Cyclization of compound 4 with hydrazine hydrate (5a), phenylhydrazine (5b) and methylhydrazine (5c). Synthesis of steroidal N(1')-aryl-substituted pyrazol-5'-onesa. Antiproliferative effects of the synthesized compounds on
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Published 08 Oct 2018

β-Hydroxy sulfides and their syntheses

  • Mokgethwa B. Marakalala,
  • Edwin M. Mmutlane and
  • Henok H. Kinfe

Beilstein J. Org. Chem. 2018, 14, 1668–1692, doi:10.3762/bjoc.14.143

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  • was proposed to proceed via the formation of the transition state 73 to avoid steric interaction between the R group of the aldehyde and the SMe of the toluene precursor, hence, led to anti selectivity. The biocatalytic reduction of α-sulfenyl-β-ketoesters 74 using Baker’s yeast was reported by
  • aromatic thiols. Ring-opening reactions of cyclohexene oxide with thiols by using CPs 1-Eu and 2-Tb. CBS-oxazaborolidine-catalyzed borane reduction of β-keto sulfides. Preparation of β-hydroxy sulfides via connectivity. Baker’s yeast-catalyzed reduction of sulfenylated β-ketoesters. Sodium-mediated ring
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Published 05 Jul 2018

A survey of chiral hypervalent iodine reagents in asymmetric synthesis

  • Soumen Ghosh,
  • Suman Pradhan and
  • Indranil Chatterjee

Beilstein J. Org. Chem. 2018, 14, 1244–1262, doi:10.3762/bjoc.14.107

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  • more effective chiral iodonium salts 16 which were used for the α-arylation of β-ketoester 86 to deliver α-arylated β-ketoesters 87 with moderate enantioselectivity (Scheme 17) [63]. This was the first example of an asymmetric α-arylation of β-ketoesters using hypervalent iodine reagents. A more
  • could be achieved even by using a 50 mol % catalyst loading. A nucleophilic attack of the fluoride ion to the intermediate 104 or a possible ligand coupling pathway via 105 could justify the product formation (Scheme 23). Waser et al. developed an asymmetric alkynylation of β-ketoesters and amides 107
  • for the alkynylation of β-ketoesters [76]. Pouységu and Quideau et al. prepared new axially chiral biaryl I(III) reagents 18 assembled with alkynyl ligands. They were able to achieve alkynylation of β-ketoesters 114 as well as dearomative alkynylation of phenolic derivatives 118 to obtain derivatives
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Published 30 May 2018

Cross-coupling of dissimilar ketone enolates via enolonium species to afford non-symmetrical 1,4-diketones

  • Keshaba N. Parida,
  • Gulab K. Pathe,
  • Shimon Maksymenko and
  • Alex M. Szpilman

Beilstein J. Org. Chem. 2018, 14, 992–997, doi:10.3762/bjoc.14.84

Graphical Abstract
  • -membered heterocycles such as thiophenes, furans, and pyrroles. Consequently, numerous multistep approaches to unsymmetrical 1,4-dicarbonyl compounds involving, e.g., SN2-type displacements [1] or highly functionalized substrates such as β-ketoesters [2][3] or β-ketosulfones [4] have been developed
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Published 03 May 2018

One-pot preparation of 4-aryl-3-bromocoumarins from 4-aryl-2-propynoic acids with diaryliodonium salts, TBAB, and Na2S2O8

  • Teppei Sasaki,
  • Katsuhiko Moriyama and
  • Hideo Togo

Beilstein J. Org. Chem. 2018, 14, 345–353, doi:10.3762/bjoc.14.22

Graphical Abstract
  • -ketoesters and phenols (the Pechmann condensation) [17]. Recent studies for the metal-catalyzed reactions for the synthesis of the coumarin skeleton are as follows: the Yb(OTf)3-catalyzed microwave irradiation of phenols and propynoic acids [18], the Pd(OAc)2-catalyzed oxidative cyclocarbonylation of 2
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Published 05 Feb 2018

5-Aminopyrazole as precursor in design and synthesis of fused pyrazoloazines

  • Ranjana Aggarwal and
  • Suresh Kumar

Beilstein J. Org. Chem. 2018, 14, 203–242, doi:10.3762/bjoc.14.15

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  • environments. All the synthesized compounds were reported as good antimicrobial agents. Recently the reaction of β-ketoesters 81 as in the three-component reaction with 5-aminopyrazoles 16 and substituted salicylic aldehydes 83 was also studied by Fan et al. [69]. An extensive survey of catalysts and solvents
  • -aminopyrazole derivatives 115 with acetylacetone (104) and various β-ketoesters 81, respectively, in refluxing acetic acid with catalytic amount of suphuric acid (Scheme 32). The reaction of 3(5)-amino-5(3)-hydrazinopyrazole dihydrochloride (118) with symmetrical and unsymmetrical diketones 119 was studied by
  •  41. 7-Chloropyrazolo[1,5-a]pyrimidines 140 obtained by 4-H/cyano/carboxylate-5-aminopyrazoles 126 (X = H, Y = R) and β-ketoesters 81 followed by chlorination with POCl3, were converted to 7-aminopyrazolo[1,5-a]pyrimidines 142 and 7-methoxy/thiomethoxypyrazolo[1,5-a]pyrimidines 143 on treatment of NIS
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Published 25 Jan 2018

Nucleophilic dearomatization of 4-aza-6-nitrobenzofuroxan by CH acids in the synthesis of pharmacology-oriented compounds

  • Alexey M. Starosotnikov,
  • Dmitry V. Shkaev,
  • Maxim A. Bastrakov,
  • Ivan V. Fedyanin,
  • Svyatoslav A. Shevelev and
  • Igor L. Dalinger

Beilstein J. Org. Chem. 2017, 13, 2854–2861, doi:10.3762/bjoc.13.277

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  • starting material and resinification. Apparently, it was caused by interaction of Et3N with ANBF because the blank experiment (1 + Et3N with no ketone added) also resulted in decomposition of ANBF. Therefore we studied reactions of 1 with more acidic 1,3-diketones, ketoesters and related compounds. The
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Published 21 Dec 2017

CF3SO2X (X = Na, Cl) as reagents for trifluoromethylation, trifluoromethylsulfenyl-, -sulfinyl- and -sulfonylation and chlorination. Part 2: Use of CF3SO2Cl

  • Hélène Chachignon,
  • Hélène Guyon and
  • Dominique Cahard

Beilstein J. Org. Chem. 2017, 13, 2800–2818, doi:10.3762/bjoc.13.273

Graphical Abstract
  • , Shibata, Toru and co-workers used CF3SO2Cl for the enantioselective chlorination of β-ketoesters and oxindoles in the presence of a dbfox-Ph/Ni(II) system (dbfox-Ph = [(R,R)-4,6-dibenzofurandiyl-2,2'-bis(4-phenyloxazoline)]) (Scheme 42) [58]. The reaction proceeded in good to excellent yields and
  • phenols. Mono- and dichlorination of carbon acids. Monochlorination of (N-aryl-N-hydroxy)acylacetamides. Examples of the synthesis of heterocycles fused with β-lactams through a chlorination/cyclisation process. Enantioselective chlorination of β-ketoesters and oxindoles. Enantioselective chlorination of
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Published 19 Dec 2017

Reagent-controlled regiodivergent intermolecular cyclization of 2-aminobenzothiazoles with β-ketoesters and β-ketoamides

  • Irwan Iskandar Roslan,
  • Kian-Hong Ng,
  • Gaik-Khuan Chuah and
  • Stephan Jaenicke

Beilstein J. Org. Chem. 2017, 13, 2739–2750, doi:10.3762/bjoc.13.270

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  • Irwan Iskandar Roslan Kian-Hong Ng Gaik-Khuan Chuah Stephan Jaenicke Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore 117543 10.3762/bjoc.13.270 Abstract Two regiodivergent approaches to intermolecular cyclization of 2-aminobenzothiazoles with β-ketoesters
  • , In(OTf)3, results in the regioselective nucleophilic attack at both carbonyl groups forming benzo[4,5]thiazolo[3,2-a]pyrimidin-4-ones instead. Keywords: cyclization; fused-ring systems; indium; radical; regiodivergent; Introduction β-Ketoesters are versatile substrates frequently used in
  • ][12][13] with leaving groups, thus switching to an electrophile [14][15][16], or convert to an α-radical carbon with an oxidant [17][18][19]. β-Ketoesters are also inexpensive, abundant and commercially available, making them attractive substrates. In our continuing effort to develop green and atom
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Published 18 Dec 2017

Vinylphosphonium and 2-aminovinylphosphonium salts – preparation and applications in organic synthesis

  • Anna Kuźnik,
  • Roman Mazurkiewicz and
  • Beata Fryczkowska

Beilstein J. Org. Chem. 2017, 13, 2710–2738, doi:10.3762/bjoc.13.269

Graphical Abstract
  • enantiomerically pure β-ketoamides (Scheme 34) [49]. 2.2.4. Reactions with carbon nucleophiles: The first reaction of vinylphosphonium salts with carbon nucleophiles was reported by Schweizer and O'Neill in 1965. The authors used vinyltriphenylphosphonium bromide (8) and ketoesters in the presence of sodium
  • of cyclic alkenes in the intramolecular Wittig reaction from vinylphosphonium bromide and ketoesters as precursors of carbon nucleophiles. Synthesis of 1,3-cyclohexadienes by reaction of 1,3-butadienyltriphenylphosphonium bromide with enolate anions. Synthesis of bicyclo[3.3.0]octenes by reaction of
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Published 15 Dec 2017

A novel synthetic approach to hydroimidazo[1,5-b]pyridazines by the recyclization of itaconimides and HPLC–HRMS monitoring of the reaction pathway

  • Dmitry Yu. Vandyshev,
  • Khidmet S. Shikhaliev,
  • Andrey Yu. Potapov,
  • Michael Yu. Krysin,
  • Fedor I. Zubkov and
  • Lyudmila V. Sapronova

Beilstein J. Org. Chem. 2017, 13, 2561–2568, doi:10.3762/bjoc.13.252

Graphical Abstract
  • [1,5-b]pyridazines along route B, 1-aminoimidazoles with no substituents at the C-5 atom of the original heterocycle and 1,3-dielectrophilic reagents are used, e.g., 1,3-diketones [24][25][26], β-ketoesters [24], α,β-unsaturated ketones [27][28], including those obtained in situ [29][30] or containing
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Published 30 Nov 2017

One-pot multistep mechanochemical synthesis of fluorinated pyrazolones

  • Joseph L. Howard,
  • William Nicholson,
  • Yerbol Sagatov and
  • Duncan L. Browne

Beilstein J. Org. Chem. 2017, 13, 1950–1956, doi:10.3762/bjoc.13.189

Graphical Abstract
  •  2). Scheme 2 also shows the physical state descriptors and photographs of the practical experiment. With suitable conditions in hand, the scope of this one-pot mechanochemical process was explored (Scheme 3). Initially, the scope of β-ketoesters was assessed and the procedure was found to be
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Published 14 Sep 2017

Iodoarene-catalyzed cyclizations of N-propargylamides and β-amidoketones: synthesis of 2-oxazolines

  • Somaia Kamouka and
  • Wesley J. Moran

Beilstein J. Org. Chem. 2017, 13, 1823–1827, doi:10.3762/bjoc.13.177

Graphical Abstract
  • conditions to effect catalytic processes with sub-stoichiometric quantities of iodine compound in the presence of an oxidant [6][7][8][9][10][11]. In this regard, we have reported the use of iodoarenes as precatalysts in the cyclizations of N-alkenylamides 1 [12], δ-alkynyl β-ketoesters 2 [13] and 5-oxo-5
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Published 31 Aug 2017

Chiral phase-transfer catalysis in the asymmetric α-heterofunctionalization of prochiral nucleophiles

  • Johannes Schörgenhumer,
  • Maximilian Tiffner and
  • Mario Waser

Beilstein J. Org. Chem. 2017, 13, 1753–1769, doi:10.3762/bjoc.13.170

Graphical Abstract
  • nucleophiles dates back to 2002, when Kim and Park described the first use of cinchona alkaloid-based quaternary ammonium salts A (i.e., derivative A1) for the enantioselective α-fluorination of β-ketoesters 1 by using N-fluorobenzenesulfonimide (NFSI, 2) as the fluoride-transfer reagent [73] (Scheme 2). By
  • described the first highly enantioselective protocol for this reaction [74]. By using just 2 mol % of their trademark binaphthyl-based PTCs B, they were able to access a broad variety of differently functionalized α-fluoro-β-ketoesters 3 with excellent selectivities and in almost quantitative isolated
  • substitution of the C9–OH group of the cinchona skeleton by fluorine has a pronounced effect on the conformation of these catalysts and that ammonium salt C can then be successfully used for the aforementioned asymmetric α-fluorination of ketoesters 1 [75]. A significant improvement for the use of classical
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Published 22 Aug 2017

Synthesis of new pyrrolidine-based organocatalysts and study of their use in the asymmetric Michael addition of aldehydes to nitroolefins

  • Alejandro Castán,
  • Ramón Badorrey,
  • José A. Gálvez and
  • María D. Díaz-de-Villegas

Beilstein J. Org. Chem. 2017, 13, 612–619, doi:10.3762/bjoc.13.59

Graphical Abstract
  • evaluated as chiral organocatalysts in the enantioselective α-chlorination of β-ketoesters, with excellent results obtained after optimisation of the organocatalyst structure [12]. In an effort to identify new, easily accessible and tuneable organocatalysts with the privileged pyrrolidine motif from the
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Published 27 Mar 2017

Synthesis of 1-indanones with a broad range of biological activity

  • Marika Turek,
  • Dorota Szczęsna,
  • Marek Koprowski and
  • Piotr Bałczewski

Beilstein J. Org. Chem. 2017, 13, 451–494, doi:10.3762/bjoc.13.48

Graphical Abstract
  • ketoesters 59. The base-mediated cyclization of the latter in the presence of sodium ethoxide led to the formation of the corresponding 1-indanone anions α to carbonyl, which next were alkylated to give 2-substituted 1-indanones 60 (Scheme 20). This one-pot process utilizing a multi-task palladium catalyst
  • vinyl β-ketoesters 156 in the presence of AlCl3 as a promoter, in high yields (up to 99%) (Scheme 45). It was further proved that the pattern of substituents at C-2, C-4 and C-5 positions was essential for the reaction efficiency. 1.2 From alcohols An interesting synthesis of optically active 1
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Published 09 Mar 2017

Regiochemistry of cyclocondensation reactions in the synthesis of polyazaheterocycles

  • Patrick T. Campos,
  • Leticia V. Rodrigues,
  • Andrei L. Belladona,
  • Caroline R. Bender,
  • Juliana S. Bitencurt,
  • Fernanda A. Rosa,
  • Davi F. Back,
  • Helio G. Bonacorso,
  • Nilo Zanatta,
  • Clarissa P. Frizzo and
  • Marcos A. P. Martins

Beilstein J. Org. Chem. 2017, 13, 257–266, doi:10.3762/bjoc.13.29

Graphical Abstract
  • compounds 11a–e were washed with acetonitrile (1 × 1 mL). The reactions done with non-symmetric dinucleophiles 8b, 8e, and 8f furnished isomeric product mixtures. Data obtained from DFT-B3LYP theoretical calculations showed that in the three α-ketoesters 5–7, the carbonyl of the ketone has a larger LUMO
  • -ketoesters 5 and 6 were done with amidines 8g,h. The reaction between 5 and 8g was tested to achieve the optimal conditions. The use of acetonitrile or ethanol as the solvent (at 25 °C or reflux) in the presence of bases such as potassium carbonate (K2CO3) or sodium ethoxide (CH3CH2ONa), and with reaction
  • condensation reaction between the α-ketoester fragment in polyazaheterocycles and amidines. The experimental results and theoretical calculations of HOMO/LUMO coefficients, together with charge density and energetic stability of the intermediates, indicate that reactions between α-ketoesters and dinucleophiles
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Published 10 Feb 2017

Enantioconvergent catalysis

  • Justin T. Mohr,
  • Jared T. Moore and
  • Brian M. Stoltz

Beilstein J. Org. Chem. 2016, 12, 2038–2045, doi:10.3762/bjoc.12.192

Graphical Abstract
  • kinetic resolution (DKR) [10][11][12][13][14][15][16]. Processes of this type were first described by Noyori in the enantioselective hydrogenation of β-ketoesters ((±)-1 → 2, Scheme 1) [6]. In the event, the resident stereocenter of the substrate 1 can epimerize via tautomerization to the enol form
  • reaction was reported by Stoltz for the generation of enantioenriched all-carbon quaternary stereocenters from racemic allyl β-ketoesters (e.g., (±)-20 → (+)-23, Scheme 5) [29]. This particular reaction is especially unusual since the stereoablative step requires scission of a C–C bond at a quaternary
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Published 16 Sep 2016

Ionic liquids as transesterification catalysts: applications for the synthesis of linear and cyclic organic carbonates

  • Maurizio Selva,
  • Alvise Perosa,
  • Sandro Guidi and
  • Lisa Cattelan

Beilstein J. Org. Chem. 2016, 12, 1911–1924, doi:10.3762/bjoc.12.181

Graphical Abstract
  • , Scheme 1) in polycarbonate chemistry [4][5], and TiO2/SiO2 and similar binary combinations are applied in the transesterification of β-ketoesters [6], and in the synthesis of unsymmetrical carbonates R1OC(O)OR2 [7]. Superacidic solids have also been described as transesterification catalysts and a
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Published 26 Aug 2016

Rearrangements of organic peroxides and related processes

  • Ivan A. Yaremenko,
  • Vera A. Vil’,
  • Dmitry V. Demchuk and
  • Alexander O. Terent’ev

Beilstein J. Org. Chem. 2016, 12, 1647–1748, doi:10.3762/bjoc.12.162

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Published 03 Aug 2016

Stereoselective synthesis of tricyclic compounds by intramolecular palladium-catalyzed addition of aryl iodides to carbonyl groups

  • Jakub Saadi,
  • Christoph Bentz,
  • Kai Redies,
  • Dieter Lentz,
  • Reinhold Zimmer and
  • Hans-Ulrich Reissig

Beilstein J. Org. Chem. 2016, 12, 1236–1242, doi:10.3762/bjoc.12.118

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  • Jakub Saadi Christoph Bentz Kai Redies Dieter Lentz Reinhold Zimmer Hans-Ulrich Reissig Freie Universität Berlin, Institut für Chemie und Biochemie, Takustrasse 3, D-14195 Berlin, Germany 10.3762/bjoc.12.118 Abstract Starting from γ-ketoesters with an o-iodobenzyl group we studied a palladium
  • forming reactions of aryl halides that involve an insertion of the intermediate aryl palladium species into a carbonyl group are relatively rare (see discussion below). Therefore this serendipitous discovery led us to investigate the reaction in more detail. Results The required γ-ketoesters A bearing the
  • in Schemes 4–6. Surprisingly, the presence of excess of the base triethylamine and the fairly long reaction times do not lead to noticeable epimerization of the precursor γ-ketoesters that would lead to an erosion of the observed stereoselectivity. In all examples the methoxycarbonyl group and the
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Published 16 Jun 2016

1H-Imidazol-4(5H)-ones and thiazol-4(5H)-ones as emerging pronucleophiles in asymmetric catalysis

  • Antonia Mielgo and
  • Claudio Palomo

Beilstein J. Org. Chem. 2016, 12, 918–936, doi:10.3762/bjoc.12.90

Graphical Abstract
  • substrate; however, to date, the carbonyl components for these reactions are mostly restricted to 1,3-diones, β-ketoesters, malonates, α-cyanoacetates, 3-substitued oxindoles and related systems. Generally, enolizable esters or carboxylic acid derivatives have been challenging in this strategy, because
  • [68], most efforts still focus on the development of unsaturated ester/amide surrogates [69][70][71], which involve α,β-unsaturated imides, N-acyl heterocycles, α-oxophosphonates, α-ketoesters, 3-methyl-4-nitro-5-alkenylisoxazoles and α’-hydroxyenones. These latter substrates have proven to be very
  • very narrow range of nucleophiles have been reported to be efficient in this regard (α,α-disubstituted aldehydes [114] and β-ketoesters [115] among others). With the aim of expanding the nucleophile scope of this transformation, in 2014 Hartwig et al. reported a highly diastereoselective iridium
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Published 09 May 2016
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