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Search for "Friedel–Crafts cyclization" in Full Text gives 12 result(s) in Beilstein Journal of Organic Chemistry.

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

  • Marc Paul Beller and
  • Ulrich Koert

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

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  • precursor for an intramolecular FriedelCrafts cyclization (Scheme 9) [24]. Therefore, phenylacetaldehyde 52 was converted to the alcohol 53, which was esterified with the α-ketoacid 54 to give ketoester 55. Grignard addition to the keto carbonyl and subsequent TBS deprotection delivered the tertiary
  • α-ketoester in the synthesis of jatrophane diterpenoids [22]. Grignard addition to an α-ketoester and subsequent FriedelCrafts cyclization in the synthesis of (−)-hopeanol (59) [24]. Diastereoselective addition to an auxiliary modified α-ketoester in the formal synthesis of (+)-campthotecin (65
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Published 15 Sep 2022

Transition-metal-free intramolecular Friedel–Crafts reaction by alkene activation: A method for the synthesis of some novel xanthene derivatives

  • Tülay Yıldız,
  • İrem Baştaş and
  • Hatice Başpınar Küçük

Beilstein J. Org. Chem. 2021, 17, 2203–2208, doi:10.3762/bjoc.17.142

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  • synthesized using the combination of hexafluoroisopropanol and triflimide as a catalyst [29]. One of the most effective C–C bond establishing reactions, which ensures an efficient synthetic way to a plenty of functionalized aryl compounds, is the FriedelCrafts cyclization reaction [30][31][32][33][34
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Published 30 Aug 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 FriedelCrafts cyclization of electron-deficient Morita–Baylis–Hillman adducts. In presence of mild reaction conditions the chiral (salen)Cr(III)/BF3·OEt2 complex affords 2
  • -substituted-1H-indenes from unique substrates of Morita–Baylis–Hillman adducts via an easy operating practical procedure. Keywords: boron trifluoride etherate; chiral (salen)chromium(III); intramolecular FriedelCrafts cyclization; Morita–Baylis–Hillman adducts; substituted-1H-indenes; Introduction
  • convinced us to explore them as suitable chiral Lewis acid catalysts for the FriedelCrafts cyclization of MBH adducts. Mononuclear(salen) complexes of aluminium, chromium, manganese and cobalt were chosen and screened for the current investigation. Results and Discussion To evaluate the scope of the
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Letter
Published 26 Aug 2021

Recent advances in the syntheses of anthracene derivatives

  • Giovanni S. Baviera and
  • Paulo M. Donate

Beilstein J. Org. Chem. 2021, 17, 2028–2050, doi:10.3762/bjoc.17.131

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  • years (2008–2020) and focuses on direct and indirect methods to construct anthracene and anthraquinone frameworks. Keywords: anthracenes; anthraquinones; FriedelCrafts cyclization; intramolecular cyclization; metal-catalyzed; Introduction Anthracene is an important aromatic hydrocarbon consisting of
  • oxidation of 1,3-dienes 159 and aroyl-substituted propiolates 160 (Scheme 36) [70]. Subsequently, the authors performed an intramolecular Friedel-Crafts cyclization of the corresponding derivatives 161 by using concentrated sulfuric acid. The authors noted that the more electron-donating alkyl or methoxy
  • intermolecular acylation/H2SO4-promoted intramolecular FriedelCrafts cyclization. The authors prepared substituted anthraquinones bearing Me, OMe, OH, Br, F, or other groups, such as anthraquinones 170a–g, in moderate to good yields (55–69%). The reaction proved efficient mainly with electron-donating
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Published 10 Aug 2021

Cascade intramolecular Prins/Friedel–Crafts cyclization for the synthesis of 4-aryltetralin-2-ols and 5-aryltetrahydro-5H-benzo[7]annulen-7-ols

  • Jie Zheng,
  • Shuyu Meng and
  • Quanrui Wang

Beilstein J. Org. Chem. 2021, 17, 1481–1489, doi:10.3762/bjoc.17.104

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  • affording intermediary benzyl carbenium ions, which are then trapped by a variety of electron-rich aromatics via Friedel–Crafts alkylation. This cascade Prins/FriedelCrafts cyclization protocol paves an expedient path to medicinally useful 4-aryltetralin-2-ol and 5-aryltetrahydro-5H-benzo[7]annulen-7-ol
  • [10][11][12][13][14]. For example, Nagumo and coworkers have developed a Prins/FriedelCrafts cyclization of homocinnamyl alcohols with aromatic aldehydes under the action of BF3·Et2O affording 2H-indeno[1,2-b]furan derivatives [15]. Likewise, Hinkle and coworkers reported in 2017 a three-step domino
  • develop a novel Prins/FriedelCrafts cyclization strategy for the synthesis of 4-aryl-2-hydroxytetralins starting from 2-(2-vinylphenyl)acetaldehydes (Scheme 2). In this protocol, we envisioned that the aldehyde 5 would give rise to an oxocarbenium ion species 6 upon treatment with a Lewis acid. The
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Published 22 Jun 2021

Prins cyclization-mediated stereoselective synthesis of tetrahydropyrans and dihydropyrans: an inspection of twenty years

  • Asha Budakoti,
  • Pradip Kumar Mondal,
  • Prachi Verma and
  • Jagadish Khamrai

Beilstein J. Org. Chem. 2021, 17, 932–963, doi:10.3762/bjoc.17.77

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  • subsequent trapping of the carbocation with the bromide ion led to all-cis-2,4,6-trisubstituted tetrahydropyran 297 (Scheme 69). Lalli and van de Weghe reported a chiral BINOL-derived bisphosphoric acid- and CuCl-catalyzed enantioselective tandem Prins–FriedelCrafts cyclization between homoallylic alcohol
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Published 29 Apr 2021

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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Published 09 Sep 2020

Multicomponent reactions (MCRs): a useful access to the synthesis of benzo-fused γ-lactams

  • Edorta Martínez de Marigorta,
  • Jesús M. de Los Santos,
  • Ana M. Ochoa de Retana,
  • Javier Vicario and
  • Francisco Palacios

Beilstein J. Org. Chem. 2019, 15, 1065–1085, doi:10.3762/bjoc.15.104

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  • be isolated. Finally, cyclopropyl ketone 91 would first rearrange by copper catalysis and the so-obtained furane derivative 96 would add to the carbocation in 95, followed by FriedelCrafts cyclization, thus generating the polycyclic isoindolinones 92 in a formal hetero [4 + 2] cycloaddition process
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Published 08 May 2019

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

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  • -indanones 69 were synthesized from benzyl Meldrum’s acids derivatives 67 in two steps [47]. In this synthesis, they underwent microwave-assisted hydrolysis to carboxylic acids 68, followed by chlorosulfonic acid-mediated FriedelCrafts cyclization to give halo-1-indanones 69 (Scheme 23). Quaternized
  • 174 followed by a FriedelCrafts cyclization in the presence of concentrated H2SO4. The [14C]1-indanone 175 was then converted in three steps to [14C]indene 176 (Scheme 50). The same reaction sequence involving the Friedel–Crafts acylation of disubstituted benzene derivatives 177 with 3
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Published 09 Mar 2017

cis-Diastereoselective synthesis of chroman-fused tetralins as B-ring-modified analogues of brazilin

  • Dimpee Gogoi,
  • Runjun Devi,
  • Pallab Pahari,
  • Bipul Sarma and
  • Sajal Kumar Das

Beilstein J. Org. Chem. 2016, 12, 2816–2822, doi:10.3762/bjoc.12.280

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  • synthesis of related-tetracyclic molecules via FriedelCrafts cyclization (Scheme 2, lower panel) promoted by metal-based Lewis acids [27][28]. Noteably, none of the synthesized molecules described in these two reports contains an angular –OH group. We feel that our synthesis involves more challenging
  • FriedelCrafts cyclization (Scheme 2, upper panel) and the products are relevant in the field of natural product-like molecules, because the synthesized molecules are close analogs of a natural product (brazilin). Moreover, the use of TsOH·H2O as an easily-accesible Brønsted acid catalyst with low loading
  • . Retrosynthetic analysis of the designed B-ring-modified analogues of brazilin. The synthetic challenge associated with the synthesis of 5 by IFCEA of 6 (above) and recent literature reports of cis-diastereoselective synthesis of related tetracyclic molecules via intramolecular FriedelCrafts cyclization
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Published 21 Dec 2016

Five-membered ring annelation in [2.2]paracyclophanes by aldol condensation

  • Henning Hopf,
  • Swaminathan Vijay Narayanan and
  • Peter G. Jones

Beilstein J. Org. Chem. 2014, 10, 2021–2026, doi:10.3762/bjoc.10.210

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  • compounds 2 we previously prepared precursors such as 5 (easily available by Wittig–Horner reaction of the appropriate bis-formyl cyclophanes) and subjected them to catalytic hydrogenation followed by a double FriedelCrafts cyclization. However, it appeared to us that a more direct route to these useful
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Published 28 Aug 2014

When cyclopropenes meet gold catalysts

  • Frédéric Miege,
  • Christophe Meyer and
  • Janine Cossy

Beilstein J. Org. Chem. 2011, 7, 717–734, doi:10.3762/bjoc.7.82

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  • activation of the cyclopropene 18 also occurred at C2 to afford, after ring-opening, the gold-stabilized allylic cation 24. However, in contrast to the acid-catalyzed reaction, subsequent intramolecular FriedelCrafts cyclization occurred by nucleophilic attack by the phenyl group (at C2) on the organogold
  • = H), the reaction led to a complex mixture of products. The authors attributed these results to the formation of less stable carbocations at C3 (primary or secondary, respectively). Other examples of gold-catalyzed isomerization of cyclopropenes that involve a FriedelCrafts cyclization have been
  • proceed through ring-opening and intramolecular FriedelCrafts cyclization have been studied using 3-aryl-cyclopropene-3-carboxylates. However, for these latter substrates, the carbonyl group can also play the role of a nucleophile and compete with the aryl group. Nucleophilic addition of carbonyl groups
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Published 30 May 2011
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