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Search for "Diels–Alder reaction" in Full Text gives 187 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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  • -workers, and was accessed over 8 steps from diene 161 (Scheme 17A) [51]. DielsAlder reaction of diene 161 and di-tert-butyl azodicarboxylate (160) followed by palladium-assisted elimination of acetic acid gave diene 162. A sequence of 4π-electrocyclisation and electrophilic transcarbamation (to 163
  • ), deprotection, decarboxylation, oxidation, nitrogen extrusion (to cyclobutadiene) and DielsAlder reaction yielded annulated tricycle 164. Further intramolecular [2 + 2] cycloaddition formed cubane precursor 165. From diketone 165, 1,3-cubane 166 was obtained by Favorskii ring contraction followed by
  • alkylation (to 172) were all possible. An alternative pathway to 1,3-cubane 166 was reported by Coote and co-workers (Scheme 17C) [64]. Through their synthesis of enone 176, used in Ueda’s synthesis of cubane 166 and previously only obtained as a side product of the DielsAlder reaction forming enone 173 [65
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Published 19 Apr 2024

Synthesis of π-conjugated polycyclic compounds by late-stage extrusion of chalcogen fragments

  • Aissam Okba,
  • Pablo Simón Marqués,
  • Kyohei Matsuo,
  • Naoki Aratani,
  • Hiroko Yamada,
  • Gwénaël Rapenne and
  • Claire Kammerer

Beilstein J. Org. Chem. 2024, 20, 287–305, doi:10.3762/bjoc.20.30

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  • introduced by Herwig and Müllen as early as in 1996 for pentacene, which was ultimately obtained in a thin-film by a thermally-activated retro-DielsAlder reaction from a tailor-made tetrachlorobenzene-pentacene soluble adduct (Scheme 1, top left) [13][14]. Over the years, thermally-induced
  • pristine acene with a dienophile to transiently form a cycloadduct with increased solubility for processing purposes, and unmasking it afterwards via a retro-DielsAlder reaction [16][17][18][19]. In parallel to retro-Diels–Alder reactions, another efficient strategy for the in situ aromatization of target
  • performances. Since the synthesis of π-CPCs involving as final step the elimination of C-based molecules, i.e., a retro-DielsAlder reaction or a decarbonylation, has already been thoroughly reviewed in the past years [4][5][9][10][11][12], this review focuses on the late-stage extrusion of chalcogen fragments
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Published 15 Feb 2024

Biphenylene-containing polycyclic conjugated compounds

  • Cagatay Dengiz

Beilstein J. Org. Chem. 2023, 19, 1895–1911, doi:10.3762/bjoc.19.141

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  • naphthazarin and triptycene units (Scheme 14) [48]. Naphthazarin derivatives are known to complex with boron moieties and metals to form electron-poor acene units. Through the DielsAlder reaction involving dienophile 66, which was formed via the tautomerization of compound 65, and diene 67, compound 68 was
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Published 13 Dec 2023

The unique reactivity of 5,6-unsubstituted 1,4-dihydropyridine in the Huisgen 1,4-diploar cycloaddition and formal [2 + 2] cycloaddition

  • Xiu-Yu Chen,
  • Hui Zheng,
  • Ying Han,
  • Jing Sun and
  • Chao-Guo Yan

Beilstein J. Org. Chem. 2023, 19, 982–990, doi:10.3762/bjoc.19.73

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  • ; isoquinolino[1,2-f][1,6]naphthyridine; Introduction Among various well-known cycloaddition reactions such as the 1,3-dipolar cycloaddition reaction, DielsAlder reaction, and the Povarov reaction, the cycloaddition reaction of Huisgen 1,4-dipoles with activated alkenes received increasing attention [1][2][3
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Published 29 Jun 2023

Construction of hexabenzocoronene-based chiral nanographenes

  • Ranran Li,
  • Di Wang,
  • Shengtao Li and
  • Peng An

Beilstein J. Org. Chem. 2023, 19, 736–751, doi:10.3762/bjoc.19.54

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  • reaction. To prevent planarization during the final oxidative cyclodehydrogenation reaction step, Jux and co-workers synthesized hexaarylbenzene precursor 3 with sterically demanding tert-butyl groups through a standard [4 + 2] DielsAlder reaction of tetra-tert-butyltolane 1 and tetracyclone 2 in an 81
  • -workers reported pyrrole-containing helical NGs 19 and 20. The precursors 17 and 18 were synthesized from pyrrole-containing alkynes and tetracyclone 2 through a typical DielsAlder reaction. The pair of enantiomers of these aza-[5]helicenes was confirmed by the X-ray crystal structure of racemic
  • this helical aza-NG was achieved by introducing a chiral auxiliary reagent at the nitrogen site [40], and the racemization barrier of one enantiomer was measured as 26.2 kcal/mol by monitoring the changes of CD spectra at 60–80 °C. The synthesis started with the DielsAlder reaction of 5H-dibenzo[b,f
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Published 30 May 2023

Strategies in the synthesis of dibenzo[b,f]heteropines

  • David I. H. Maier,
  • Barend C. B. Bezuidenhoudt and
  • Charlene Marais

Beilstein J. Org. Chem. 2023, 19, 700–718, doi:10.3762/bjoc.19.51

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  • induces a retro-DielsAlder reaction, giving dibenzo[b,f]azepine 110 in good yield (Scheme 23). The authors synthesised a series of derivatives, with substituents including -OMe, -Me, -Cl and –F, with good yield (50–78%) in one step. In the follow-up reported in 2018 [65], the method was extended to aryl
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Published 22 May 2023

Transition-metal-catalyzed domino reactions of strained bicyclic alkenes

  • Austin Pounder,
  • Eric Neufeld,
  • Peter Myler and
  • William Tam

Beilstein J. Org. Chem. 2023, 19, 487–540, doi:10.3762/bjoc.19.38

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Published 24 Apr 2023

Strategies to access the [5-8] bicyclic core encountered in the sesquiterpene, diterpene and sesterterpene series

  • Cécile Alleman,
  • Charlène Gadais,
  • Laurent Legentil and
  • François-Hugues Porée

Beilstein J. Org. Chem. 2023, 19, 245–281, doi:10.3762/bjoc.19.23

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Published 03 Mar 2023
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  • amorph-4-ene-10β-ol known from plants. A short synthesis using an organocatalytic approach through a tandem Mannich/intramolecular DielsAlder reaction led to a mixture of cadinols, which was used for the assignment of the natural cadinol structures and their stereoisomers. Keywords: Anura; chiral gas
  • by Taber and Gunn [13], using a DielsAlder reaction as the key step, as it would allow access to several cadinol diastereomers, in line with a diversity-oriented synthetic plan. The synthesis began with enamine formation of isovaleraldehyde (1) and piperidine (2) to give enamine 3 that was reacted
  • triene system for an intramolecular DielsAlder reaction. Oxidation of 8 with IBX changed the electronic properties of the system implementing an electron-deficient double bond suitable for a heat-induced intramolecular DielsAlder reaction. The higher reaction temperature compared to the original
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Published 16 Feb 2023

1,4-Dithianes: attractive C2-building blocks for the synthesis of complex molecular architectures

  • Bram Ryckaert,
  • Ellen Demeyere,
  • Frederick Degroote,
  • Hilde Janssens and
  • Johan M. Winne

Beilstein J. Org. Chem. 2023, 19, 115–132, doi:10.3762/bjoc.19.12

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  • -derived dienophile 27 can be used as a ‘linchpin’ reagent (Scheme 8c), as a first DielsAlder reaction can be followed by a straightforward base-promoted β-elimination of the chloride, releasing another reactive dienophile. This way, highly congested ring systems can be built up around the dithiin ring
  • ]. For example, after a first DielsAlder reaction with furan followed by dehydrochlorination, the resulting dithiin-tetroxide dienophile 38 is reacted with sulfolane (as a buta-1,3-diene precursor), to elaborate a propellane system with a fused cyclohexene ring. Reductive desulfonylation of the dithiane
  • are straightforward and high yielding. The concept of tethering DielsAlder reaction partners with a temporary 1,4-dithiane-type ring has also been successfully extended to dienes (Scheme 9). Here, its strategic value is very straightforward, as it can be used to lock linear dienes into their reactive
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Published 02 Feb 2023

Preparation of an advanced intermediate for the synthesis of leustroducsins and phoslactomycins by heterocycloaddition

  • Anaïs Rousseau,
  • Guillaume Vincent and
  • Cyrille Kouklovsky

Beilstein J. Org. Chem. 2022, 18, 1385–1395, doi:10.3762/bjoc.18.143

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  • on the synthesis and the coupling of three main fragments. The central fragment was synthesized via a regio-and stereoselective nitroso DielsAlder reaction with an enol phosphate, followed by reductive cleavage of the phosphate to the ketone 11b. Coupling studies of this fragment with the lactone
  • –O bond from an 1,2-oxazine, itself obtained by a nitroso DielsAlder reaction from a chiral nitroso derivative and a functionalized diene (Figure 3). The nitroso Diels–Alder cycloaddition reaction has been well studied and has been used as a powerful tool for synthesis [19][20][21][22]. We have
  • have therefore completed a quick, efficient and selective access to the central core of leustroducsins/phoslactomycins using an asymmetric nitroso DielsAlder reaction. This fragment displays a ketone function that will be used for coupling with the lactone fragment 3 by generation of the tertiary
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Published 04 Oct 2022

Enzymes in biosynthesis

  • Jeroen S. Dickschat

Beilstein J. Org. Chem. 2022, 18, 1131–1132, doi:10.3762/bjoc.18.116

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  • reactions that were first known from synthetic chemistry, e.g., pericyclases can promote pericyclic reactions such as [4 + 2]-cycloaddition, also known as DielsAlder reaction [3]. In fact, most named reactions in organic chemistry originally discovered by synthetic chemists have an analogy in nature
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Published 30 Aug 2022

Radical cation Diels–Alder reactions of arylidene cycloalkanes

  • Kaii Nakayama,
  • Hidehiro Kamiya and
  • Yohei Okada

Beilstein J. Org. Chem. 2022, 18, 1100–1106, doi:10.3762/bjoc.18.112

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  • to be much more effective in the reaction than other cycloalkanes. Since the reaction is completed with a substoichiometric amount of electricity, a radical cation chain pathway is likely to be involved. Keywords: arylidene cycloalkane; DielsAlder reaction; radical cation; single-electron transfer
  • electrochemistry in most cases, probably because both single-electron oxidation and reduction are made possible at the same surface [45]. This is especially true for the radical cation DielsAlder reaction, since non-substituted β-methylstyrene, which was previously reported as an unsuccessful dienophile, was
  • found to participate under TiO2 photoelectrochemical conditions (Scheme 1) [46][47]. We questioned whether the scope of the radical cation DielsAlder reaction could be further expanded, with particular interest on the installation of a second substituent at the β-position. Described herein is our
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Published 25 Aug 2022

Copper-catalyzed multicomponent reactions for the efficient synthesis of diverse spirotetrahydrocarbazoles

  • Shao-Cong Zhan,
  • Ren-Jie Fang,
  • Jing Sun and
  • Chao-Guo Yan

Beilstein J. Org. Chem. 2022, 18, 796–808, doi:10.3762/bjoc.18.80

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  • [carbazole-2,3'-indolines], spiro[carbazole-3,5'-pyrimidines] and spiro[carbazole-3,1'-cycloalkanes] in satisfactory yields and with high diastereoselectivity. Keywords: DielsAlder reaction; indole; indolo-2,3-quinodimethane; Levy reaction; tetrahydrocarbazole; spirooxindole; Introduction
  • ][48][49][50]. On the other hand, the DielsAlder reaction of the in situ generated indole-2,3-quinodimethanes with various dienophiles is also a powerful method for rapid construction of functionalized tetrahydrocarbazoles [51][52][53][54][55][56][57][58][59][60][61][62][63][64][65][66][67][68]. In
  • underwent a [4 + 2] cycloaddition reaction (reaction 1 in Scheme 1) [69][70][71][72][73][74]. This metal-catalyzed one-pot reaction not only combined the advantages of a traditional DielsAlder reaction and the recently developed multicomponent reactions, but also meets the goal of green and sustainable
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Published 07 Jul 2022

Complementarity of solution and solid state mechanochemical reaction conditions demonstrated by 1,2-debromination of tricyclic imides

  • Petar Štrbac and
  • Davor Margetić

Beilstein J. Org. Chem. 2022, 18, 746–753, doi:10.3762/bjoc.18.75

Graphical Abstract
  • ; cycloaddition; debromination; DielsAlder reaction; mechanochemistry; Introduction The complementarity of reaction conditions [1][2][3] where the reaction takes place under some, but not under other conditions, or where a chemical reaction proceeds in a different way or mechanism is a useful feature in
  • -reactions with solvent. An alternative method for the synthesis 7-oxanorbornadiene-2,3-anhydrides and imides is via retro DielsAlder reaction employing the flash vacuum pyrolysis (FVP) technique [16]. However, the FVP also has disadvantages such as limited scope of functionalities which can withstand harsh
  • . Dibromide 42 was prepared by DielsAlder reaction of anthracene (13) and 2,3-dibromo-N-methylmaleimide (41) (Scheme 3). Heating of the reactants at 180 °C for 10 min provided the required cycloadduct 42 (98% yield). When 42 was subjected to Zn/Cu debromination in a ball mill in the presence of anthracene
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Published 24 Jun 2022

Heteroleptic metallosupramolecular aggregates/complexation for supramolecular catalysis

  • Prodip Howlader and
  • Michael Schmittel

Beilstein J. Org. Chem. 2022, 18, 597–630, doi:10.3762/bjoc.18.62

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  • hydrogen bonding. As a result, the DielsAlder reaction of cyclopentadiene (128) and 127 was catalyzed. Upon addition of n-Bu4NCl, the open form was afforded that aggregated to oligomers [(126•Cl)n]n+ through intermolecular hydrogen bonding at the urea moieties. Now, activation of 127 stopped and catalysis
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Published 27 May 2022

Menadione: a platform and a target to valuable compounds synthesis

  • Acácio S. de Souza,
  • Ruan Carlos B. Ribeiro,
  • Dora C. S. Costa,
  • Fernanda P. Pauli,
  • David R. Pinho,
  • Matheus G. de Moraes,
  • Fernando de C. da Silva,
  • Luana da S. M. Forezi and
  • Vitor F. Ferreira

Beilstein J. Org. Chem. 2022, 18, 381–419, doi:10.3762/bjoc.18.43

Graphical Abstract
  • 2002, an interesting methodology for menadione synthesis was reported by Kacan and Karabulut (Scheme 5). The authors studied a DielsAlder reaction, using LiClO4-diethyl ether (LPDE) as a catalyst, 1-ketoxy-1,3-butadiene 28 as a diene and 2-methyl-1,4-benzoquinone (29) as dienophile. By this method
  • )ruthenium(II) dichloride as catalyst. Then, a BF3·OEt2-catalzyed migration of the methyl group to the C-2 position and removal of the tert-butoxy group in a 1,1,1,3,3,3-hexafluoroisopropanol (HFIP)/toluene mixture afforded 2-methyl-1,4-benzoquinone (29). Finally, a DielsAlder reaction was performed with
  • materials allow for the synthesis of more complex molecules such as natural products. Within this scope, the menadione (10) molecule has been explored as substrate for this versatile reaction. Ryu and co-workers described an enantioselective and structurally selective DielsAlder reaction for the synthesis
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Published 11 Apr 2022

Synthesis of piperidine and pyrrolidine derivatives by electroreductive cyclization of imine with terminal dihaloalkanes in a flow microreactor

  • Yuki Naito,
  • Naoki Shida and
  • Mahito Atobe

Beilstein J. Org. Chem. 2022, 18, 350–359, doi:10.3762/bjoc.18.39

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  • ]. Conventional synthetic methods for piperidine derivatives include nucleophilic substitution (route (1) in Scheme 1), reductive amination (route (2)), intramolecular cyclization of amines and alkenes (route (3)), the DielsAlder reaction and subsequent reduction (route (4)), and the radical cyclization reaction
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Published 29 Mar 2022

Site-selective reactions mediated by molecular containers

  • Rui Wang and
  • Yang Yu

Beilstein J. Org. Chem. 2022, 18, 309–324, doi:10.3762/bjoc.18.35

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  • -stoichiometric quantities of hosts because of the product inhibition effect, which arose from the entropic disadvantage of the need for binding two reactant molecules [39][40][41][42][43]. In this particular report, when the octahedral cage host A was used, the DielsAlder reaction of 9-hydroxymethylanthracene
  • employed, the site-selectivity turned back to the 1,9-position, and with catalytic turnover (Figure 1d). Only 10 mol % of B promoted the DielsAlder reaction of 1 and N-phenylphthalimide (5) almost quantitatively affording the 9,10-adduct 6 at room temperature for 5 hours. Control experiments proved the
  • molecular containers, the authors designed to investigate the DielsAlder reaction between 2 and naphthalene 7. As expected, the reactants were encapsulated within the cage host A successfully at room temperature and formed a ternary complex A•(7•2), and after being heated at 100 °C for 8 hours, the site
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Published 14 Mar 2022

α-Ketol and α-iminol rearrangements in synthetic organic and biosynthetic reactions

  • Scott Benz and
  • Andrew S. Murkin

Beilstein J. Org. Chem. 2021, 17, 2570–2584, doi:10.3762/bjoc.17.172

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  • reduction in conjugation. Another example of a tandem α-ketol rearrangement was used in the total synthesis of delitschiapyrone A (49), a cytotoxic natural product with previously demonstrated efficacy against several cancer cell lines. The final steps of the synthesis include a DielsAlder reaction between
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Published 15 Oct 2021

Efficient synthesis of polyfunctionalized carbazoles and pyrrolo[3,4-c]carbazoles via domino Diels–Alder reaction

  • Ren-Jie Fang,
  • Chen Yan,
  • Jing Sun,
  • Ying Han and
  • Chao-Guo Yan

Beilstein J. Org. Chem. 2021, 17, 2425–2432, doi:10.3762/bjoc.17.159

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  • Ren-Jie Fang Chen Yan Jing Sun Ying Han Chao-Guo Yan College of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou 225002, China 10.3762/bjoc.17.159 Abstract The p-TsOH-catalyzed DielsAlder reaction of 3-(indol-3-yl)maleimides with chalcone in toluene at 60 °C afforded two
  • reaction and sequential aromatization process. Keywords: carbazole; chalcone; DielsAlder reaction; maleimide; pyrrolo[3,4-c]carbazole; 3-vinylindole; Introduction Carbazole is one of the most well-known privileged nitrogen-containing heterocycles. The carbazole skeleton is widely occurring in natural
  • ][18]. Because indoles are readily available materials, the direct extension of indoles to carbazole skeletons has a great advantage [19][20][21][22][23][24][25][26][27]. Therefore, the DielsAlder reaction of activated 2-vinylindolines or 3-vinylindolines with diverse dienophiles has become the most
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Published 16 Sep 2021

Nomimicins B–D, new tetronate-class polyketides from a marine-derived actinomycete of the genus Actinomadura

  • Zhiwei Zhang,
  • Tao Zhou,
  • Taehui Yang,
  • Keisuke Fukaya,
  • Enjuro Harunari,
  • Shun Saito,
  • Katsuhisa Yamada,
  • Chiaki Imada,
  • Daisuke Urabe and
  • Yasuhiro Igarashi

Beilstein J. Org. Chem. 2021, 17, 2194–2202, doi:10.3762/bjoc.17.141

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  • intramolecular DielsAlder reaction [20][25]. Compound 3 is very likely a biosynthetic precursor of 4. This is the first report on the isolation of a biosynthetic precursor of spirotetronate antibiotics as an innate metabolite from a wild-type strain, while such an intermediate was previously obtained from a
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Published 27 Aug 2021

A straightforward conversion of 1,4-quinones into polycyclic pyrazoles via [3 + 2]-cycloaddition with fluorinated nitrile imines

  • Greta Utecht-Jarzyńska,
  • Karolina Nagła,
  • Grzegorz Mlostoń,
  • Heinz Heimgartner,
  • Marcin Palusiak and
  • Marcin Jasiński

Beilstein J. Org. Chem. 2021, 17, 1509–1517, doi:10.3762/bjoc.17.108

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  • either onto the C=C or C=O bond. The present work should also be considered as an extension of our earlier studies focused on the exploration of 1,4-quinones in the [3 + 2]-cycloaddition and hetero-DielsAlder reaction performed with thiocarbonyl S-methanides and thiochalcones, respectively [37][38
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Published 28 Jun 2021

Organocatalytic asymmetric Michael/acyl transfer reaction between α-nitroketones and 4-arylidenepyrrolidine-2,3-diones

  • Chandrakanta Parida and
  • Subhas Chandra Pan

Beilstein J. Org. Chem. 2021, 17, 1447–1452, doi:10.3762/bjoc.17.100

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  • contemporarily [19][20][21]. In recent years 4-arylidenepyrrolidine-2,3-diones have been explored mainly for the preparation of bicyclic dihydropyran derivatives through the catalytic inverse-electron-demand hetero-DielsAlder reaction [22][23][24]. We postulated that 4-arylidenepyrrolidine-2,3-diones could also
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Published 14 Jun 2021

N-tert-Butanesulfinyl imines in the asymmetric synthesis of nitrogen-containing heterocycles

  • Joseane A. Mendes,
  • Paulo R. R. Costa,
  • Miguel Yus,
  • Francisco Foubelo and
  • Camilla D. Buarque

Beilstein J. Org. Chem. 2021, 17, 1096–1140, doi:10.3762/bjoc.17.86

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  • number of classical methodologies have been used for their synthesis, in which the key step is the generation of the six-membered ring, including the aldol reaction, the reductive amination, Mannich reaction, ring closing metathesis, DielsAlder reaction with imines as dienophiles, aza-Prins cyclization
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Published 12 May 2021
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