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Search for "Friedel–Crafts reaction" in Full Text gives 59 result(s) in Beilstein Journal of Organic Chemistry.

Green and sustainable approaches for the Friedel–Crafts reaction between aldehydes and indoles

  • Periklis X. Kolagkis,
  • Eirini M. Galathri and
  • Christoforos G. Kokotos

Beilstein J. Org. Chem. 2024, 20, 379–426, doi:10.3762/bjoc.20.36

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  • reaction between aldehydes with indoles, while focusing on the more environmentally friendly methods developed over the years. Keywords: aldehyde; BIMs; FriedelCrafts reaction; green chemistry; indole; Review Medicinal properties In recent years, diindolylmethane (DIM, 1) and its derivatives known as
  • nanoparticles to conduct the FriedelCrafts reaction between indoles and aldehydes [104]. In an effort to synthesize the sulfated zirconia nanocompounds, a new two-step precipitation method was developed. The first step involved the employment of zirconium oxychloride and its precipitation with ammonium
  • associated with low catalyst loading, extremely high efficiency and broad substrate scope and the possibility of use of both organic solvents or water, with the drawback however, of the employment of conventional heating [92]. In 2019, Toy et al. proposed an alternative approach for the FriedelCrafts
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Published 22 Feb 2024

Tandem Hock and Friedel–Crafts reactions allowing an expedient synthesis of a cyclolignan-type scaffold

  • Viktoria A. Ikonnikova,
  • Cristina Cheibas,
  • Oscar Gayraud,
  • Alexandra E. Bosnidou,
  • Nicolas Casaretto,
  • Gilles Frison and
  • Bastien Nay

Beilstein J. Org. Chem. 2024, 20, 162–169, doi:10.3762/bjoc.20.15

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  • –Crafts reactions, rather than an oxocarbenium. Keywords: 1-aryltetralines; FriedelCrafts reaction; Hock rearrangement; oxidative cleavage; tandem reactions; Introduction The Hock cleavage [1] consists in the acid-catalyzed rearrangement of organic hydroperoxides, leading to the oxidative cleavage of a
  • ), successively involving a Schenck-ene photooxygenation of an alkene A, an acid-catalyzed Hock cleavage of hydroperoxide B generating an aldehyde derivative C, and an acid-catalyzed FriedelCrafts reaction in the presence of an aromatic nucleophile leading to D [17]. In principle, a second FriedelCrafts
  • photooxygenation, Hock rearrangement and FriedelCrafts reaction, which is supposed to proceed through aldehyde 3 (see further discussion below on the reaction mechanism). To complete this exploratory work, we envisaged to add an external aromatic nucleophile to the reaction mixture, namely 1,3,5-trimethoxybenzene
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Published 25 Jan 2024
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  • Anup Biswas Department of Chemistry, Hooghly Women’s College, Vivekananda Road, Pipulpati, Hooghly - 712103, WB, India 10.3762/bjoc.19.72 Abstract The aza-FriedelCrafts reaction allows an efficient coupling of electron-rich aromatic systems with imines for the facile incorporation of aminoalkyl
  • stereoselectivity is also explained. Keywords: asymmetric; aza-FriedelCrafts reaction; H-bonding; organocatalysis; stereoselectivity; Introduction The ease of a chemical transformation depends on the thermodynamic instability of a chemical bond owing to its fast cleavage under mild reaction conditions. A C–H
  • ], amidines [11], isothioureas [12][13], whereas thioureas [14][15], ureas [16], phosphoric acids [17][18], and squaramides [19][20] fall into the second category. The FriedelCrafts reaction, discovered by Charles Friedel and James Crafts in 1877 allows the aromatic C–H bond functionalization through the
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Published 28 Jun 2023

Pyridine C(sp2)–H bond functionalization under transition-metal and rare earth metal catalysis

  • Haritha Sindhe,
  • Malladi Mounika Reddy,
  • Karthikeyan Rajkumar,
  • Akshay Kamble,
  • Amardeep Singh,
  • Anand Kumar and
  • Satyasheel Sharma

Beilstein J. Org. Chem. 2023, 19, 820–863, doi:10.3762/bjoc.19.62

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  • . In addition, the lone pair electrons of the nitrogen atom interact with Lewis acids instead of the π-electrons of the ring system thus resulting to its reduced reactivity for electrophilic aromatic substitution reactions, such as a FriedelCrafts reaction [21][22][23]. Hence, it is challenging to
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Published 12 Jun 2023

Friedel–Crafts acylation of benzene derivatives in tunable aryl alkyl ionic liquids (TAAILs)

  • Swantje Lerch,
  • Stefan Fritsch and
  • Thomas Strassner

Beilstein J. Org. Chem. 2023, 19, 212–216, doi:10.3762/bjoc.19.20

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  • compounds, acylation is possible by an organic acid chloride/acid anhydride and a Lewis acid [6][7]. In the course of the development of ionic liquids (ILs) as a reaction medium for chemical reactions [8][9], the FriedelCrafts reaction was also examined [10][11][12][13][14][15][16]. First protocols were
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Published 23 Feb 2023

Two-step continuous-flow synthesis of 6-membered cyclic iodonium salts via anodic oxidation

  • Julian Spils,
  • Thomas Wirth and
  • Boris J. Nachtsheim

Beilstein J. Org. Chem. 2023, 19, 27–32, doi:10.3762/bjoc.19.2

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  • , we improved the formation of iodoarenes through a Brønsted acid-mediated FriedelCrafts reaction followed by an oxidative cyclization to form the desired CDIS 1 (Scheme 1A). This one-pot approach is based on ortho-iodinated benzyl alcohols as starting materials. It allows access to a variety of
  • the FriedelCrafts reaction via GC analysis. Both steps in series resulted in successful product formation with an albeit slightly diminished yield of 49% (Table 3, entry 3). We increased the yield to 54% by introducing an electrolyte (Table 3, entry 2). A further current increase had no beneficial
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Published 03 Jan 2023

Combining the best of both worlds: radical-based divergent total synthesis

  • Kyriaki Gennaiou,
  • Antonios Kelesidis,
  • Maria Kourgiantaki and
  • Alexandros L. Zografos

Beilstein J. Org. Chem. 2023, 19, 1–26, doi:10.3762/bjoc.19.1

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  • aromatic common intermediate 9 (Scheme 10). Despite the simplicity, the most obvious disconnections, such as an anionic enone conjugated addition and a direct cationic FriedelCrafts reaction failed. Highlighting the power of radical disconnection, the group thought of utilizing a β-keto carbon-centered
  • radical to circumvent the unsuccessful FriedelCrafts reaction. Prior reports implicated β-keto radical formation in the ring opening of siloxycyclopropanes with photoinduced electron transfer (PET) to 1,4-dicyanonaphthalene [65]. Inspired by reports on dual photoredox and Ni-catalytic cross-coupling
  • lutidine base, 7 mol % organic photocatalyst 4CzIPN, 30 mol % NiBr2, and 30 mol % bpy provided 57% of 9. Intramolecular FriedelCrafts reaction by Et2AlCl and HFIP complex led to 123, possessing the correct connectivity for the divergent synthesis of the family. Choreographically executed sequential
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Published 02 Jan 2023

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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  • alcohol 56, which was dehydroxylated to the diastereomeric cations VIII and IX. FriedelCrafts reaction gave diastereomeric lactones 57 and 58. The major diastereomer 58 could be converted to the complex polyphenol (−)-hopeanol (59) in seven further steps. (+)-Camptothecin In the formal synthesis of the
  • mesoxalic ester amide 102 in a FriedelCrafts reaction followed by a spontaneous lactamization to give (rac)-cladoniamide G (103). The mesoxalic ester amide 102 was synthesized from malonyl chloride 104 through amidation and Regitz diazotransfer, yielding diazo compound 105. Subsequent oxidation and
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Published 15 Sep 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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  • catalysts that allow ON/OFF reaction control in photoredox catalysis [120], phosphate diester transesterification [121], FriedelCrafts reaction, ring opening of epoxides, oligomerization [116], and acyl-transfer reactions [122][123]. While there are further examples by Mirkin [124][125][126], Schmittel
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Published 27 May 2022

Synthesis of 5-arylacetylenyl-1,2,4-oxadiazoles and their transformations under superelectrophilic activation conditions

  • Andrey I. Puzanov,
  • Dmitry S. Ryabukhin,
  • Anna S. Zalivatskaya,
  • Dmitriy N. Zakusilo,
  • Darya S. Mikson,
  • Irina A. Boyarskaya and
  • Aleksander V. Vasilyev

Beilstein J. Org. Chem. 2021, 17, 2417–2424, doi:10.3762/bjoc.17.158

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  • bond of these oxadiazoles quantitatively resulted in E/Z-vinyl triflates. The reactions of the cationic intermediates have been studied by DFT calculations and the reaction mechanisms are discussed. Keywords: acetylene-oxadiazoles; FriedelCrafts reaction; hydroarylation; superelectrophilic activation
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Published 15 Sep 2021

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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  • carried out in order to synthesize the desired xanthene derivatives using the alkenes as starting compounds. The intramolecular FriedelCrafts reaction was catalyzed by trifluoroacetic acid (TFA) and provided some novel substituted 9-methyl-9-arylxanthenes with good yields at room temperature within 6–24
  • intramolecular coupling of arynes by aldehydes or phenols [21][22][23][24], and Lewis acid-catalyzed cyclization of salicylaldehydes and cyclohexenones or tetralones [25]. Some other new and prominent synthesis methods of xanthenes are the tandem arylation/FriedelCrafts reaction of o-hydroxy bisbenzylic
  • development trials for the synthesis of xanthene derivatives were carried out. For this purpose, catalyst researches were carried out using compound 4a. An intramolecular FriedelCrafts reaction was tried by activating the alkene with various organic Brønsted acids and Lewis acids (Table 1). In the reaction
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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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  • Reactions associated with carbon–carbon bond formations are explored for their synthetic utility in extending the carbon framework in organic molecules [1][2][3]. Among the known C–C bond forming methodologies the FriedelCrafts reaction is the most utilized methodology. As a result of its broad scope of
  • efficient, novel and efficient FriedelCrafts reaction methodology in presence of novel catalysts will widely serve its purpose in synthesising molecules of biological interest. Thereby with the goal of operating FC reactions in terminal allylic units of Morita–Baylis–Hillman adducts we sought to screen the
  • affect the scope of the reaction. On contradictory to the literature reports [Cr(III)salenCl] complex surprisingly catalysed the intramolecular FriedelCrafts reaction in electron deactivated arenes of MBH adducts [10][11][12][13][14]. However, ortho/meta-substituted arenes of MBH adducts were inert to
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Published 26 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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  • to 2,4-disubstituted tetralin compounds and thus facilitate their biological investigations. The cascade Prins/FriedelCrafts reaction to form multiple chemical bonds in one operation has emerged as an atom-economic and straightforward strategy for the construction of oxygen-containing heterocycles
  • -promoted condensation of a homoallylic alcohol and an aldehyde to give an oxocarbenium ion, which is then reacted with an olefinic/alkynic bond generating a carbocation that undergoes a FriedelCrafts reaction. Given the potential value of tetralin-2-ol scaffolds to drug research programs, we decided to
  • vinyl aldehydes 13, next the cascade Prins/FriedelCrafts reaction was examined. We started our investigations by applying aldehyde 13a as the model substrate (Scheme 5). A Lewis acid screening was carried out to identify the best catalyst for the tandem intramolecular Prins/FriedelCrafts reaction
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Published 22 Jun 2021

Iodine-catalyzed electrophilic substitution of indoles: Synthesis of (un)symmetrical diindolylmethanes with a quaternary carbon center

  • Thanigaimalai Pillaiyar,
  • Masoud Sedaghati,
  • Andhika B. Mahardhika,
  • Lukas L. Wendt and
  • Christa E. Müller

Beilstein J. Org. Chem. 2021, 17, 1464–1475, doi:10.3762/bjoc.17.102

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  • undergoes a C3-selective FriedelCrafts reaction with 2a to deliver intermediate D, and the catalyst I2 is regenerated by the reaction of HOI and I− (see C to D in box highlighted by dashed line). The intermediate D is stabilized by aromatization yielding product 3a and H2O. Conclusion The described novel
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Published 18 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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  • ion, which was followed by a completely diastereoselective FriedelCrafts reaction (Scheme 70). List and co-workers devised a strategy employing highly acidic confined iminoimidodiphosphate (iIDP) Brønsted acids 308 that catalyzed asymmetric Prins cyclizations of both aliphatic and aromatic aldehydes
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Published 29 Apr 2021

CF3-substituted carbocations: underexploited intermediates with great potential in modern synthetic chemistry

  • Anthony J. Fernandes,
  • Armen Panossian,
  • Bastien Michelet,
  • Agnès Martin-Mingot,
  • Frédéric R. Leroux and
  • Sébastien Thibaudeau

Beilstein J. Org. Chem. 2021, 17, 343–378, doi:10.3762/bjoc.17.32

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  • produced from the activation of 61 with Ga(OTf)3 and reacts with 62 in a FriedelCrafts reaction to afford 63 (Scheme 18). Further control experiments showed that derivatives 63 were not stable at 80 °C under the reaction conditions and isomerized to furnish 64. Based on these observations, the authors
  • proposed that upon heating, Ga(OTf)3 reacts with 63 to release an indolium ion 65 and forms an organogallium species 67 via intermediate 66, which, after protodemetallation, releases indole 62 and regenerates the catalyst. The retro-FriedelCrafts reaction at 80 °C at the indole C3-position thus allows the
  • benzylic carbenium ion 122’. Subsequently, 122’ reacts in a FriedelCrafts reaction with benzene to generate 123. After two successive hydroarylation reactions, the final product 121 is produced via the formation of vinylic and benzylic carbenium ions 124 and 125, respectively (Scheme 32). Moran et al
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Published 03 Feb 2021

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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  • mediated by strong acids led to the cleavage of the proximal bond by the generation of fluorine-stabilized carbocations (SN1 mechanism) [114]. The FriedelCrafts reaction of 2,2-difluorocyclopropanecarbonyl chloride (148) with arenes 149a–c was accompanied by a proximal bond scission promoted by the strong
  • intermediate allylic cation which was the electrophile in a FriedelCrafts reaction with 159. The subsequent desilylation of the Friedel–Crafts product gave an α-fluorinated ketone intermediate which then reacted with a second equivalent of 159 in a (Z)-stereoselective, chelation-controlled process. Fu et al
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Published 26 Jan 2021

Activation of pentafluoropropane isomers at a nanoscopic aluminum chlorofluoride: hydrodefluorination versus dehydrofluorination

  • Maëva-Charlotte Kervarec,
  • Thomas Braun,
  • Mike Ahrens and
  • Erhard Kemnitz

Beilstein J. Org. Chem. 2020, 16, 2623–2635, doi:10.3762/bjoc.16.213

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  • . This implies HF addition to 4 or 5. In the presence of benzene, 14 can also generate the Friedel–Crafts product 9; however, product 9 can also be generated from 4 by hydrodefluorination followed by a FriedelCrafts reaction. The Friedel–Crafts product 8 can as well be formed from 10c directly, via a
  • FriedelCrafts reaction followed by HF elimination. Comparable to the reaction patterns of 10a, the reactivity study on 10c reveals that with a small amount of silane, the dehydrofluorination to 4 is favored, and with more silane, the conversions in Scheme 12 end up favorably in the formation of 6
  • allylic hydrodefluorination to give 5. In the presence of benzene, at 1, a FriedelCrafts reaction can generate 3, which further supports the formation as an intermediate of 1. Moreover, the intermediate 14 can also produce 9 via a FriedelCrafts reaction, which again supports the pathway proposed to
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Published 23 Oct 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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Published 09 Sep 2020

Synthesis of 6,13-difluoropentacene

  • Matthias W. Tripp and
  • Ulrich Koert

Beilstein J. Org. Chem. 2020, 16, 2136–2140, doi:10.3762/bjoc.16.181

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  • HOMO–LUMO gap of 6,13-difluoropentacene was determined via UV–vis spectroscopy and compared to other fluorinated pentacenes. Keywords: fluorinated acenes; FriedelCrafts reaction; ortho-lithiation; synthesis; Introduction Pentacenes are a prototype in the field of organic semiconductors due to their
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Published 02 Sep 2020

Reaction of indoles with aromatic fluoromethyl ketones: an efficient synthesis of trifluoromethyl(indolyl)phenylmethanols using K2CO3/n-Bu4PBr in water

  • Thanigaimalai Pillaiyar,
  • Masoud Sedaghati and
  • Gregor Schnakenburg

Beilstein J. Org. Chem. 2020, 16, 778–790, doi:10.3762/bjoc.16.71

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  • advantages of this protocol. Keywords: C–C-bond formation; C3-funtionalization of indole; diindolylmethane; FriedelCrafts reaction; indole; indole-3-carbinol; large-scale synthesis; recyclability; Introduction (1H-Indol-3-yl)methanols have emerged as versatile pre-electrophiles for C–C functionalization
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Published 20 Apr 2020

Synthesis of six-membered silacycles by borane-catalyzed double sila-Friedel–Crafts reaction

  • Yafang Dong,
  • Masahiko Sakai,
  • Kazuto Fuji,
  • Kohei Sekine and
  • Yoichiro Kuninobu

Beilstein J. Org. Chem. 2020, 16, 409–414, doi:10.3762/bjoc.16.39

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  • , Fukuoka 816-8580, Japan 10.3762/bjoc.16.39 Abstract We have developed a catalytic synthetic method to prepare phenoxasilins. A borane-catalyzed double sila-FriedelCrafts reaction between amino group-containing diaryl ethers and dihydrosilanes can be used to prepare a variety of phenoxasilin derivatives
  • -FriedelCrafts reaction is emerging as a powerful tool for C–H silylation [28][29]. In addition, intra- and intermolecular sila-Friedel–Crafts reactions have been recently developed [30][31][32][33][34][35][36][37][38][39], which have great potential as efficient synthetic strategies to construct
  • benzosiloles [39]. We have also contributed to the synthesis of silafluorenes from biphenyls and dihydrosilanes using a borane-catalyzed double sila-FriedelCrafts reaction [40][41]. Subsequently, we envisaged that the catalytic reaction between diaryl ethers and dihydrosilanes may be a useful protocol to
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Published 17 Mar 2020

Carbazole-functionalized hyper-cross-linked polymers for CO2 uptake based on Friedel–Crafts polymerization on 9-phenylcarbazole

  • Dandan Fang,
  • Xiaodong Li,
  • Meishuai Zou,
  • Xiaoyan Guo and
  • Aijuan Zhang

Beilstein J. Org. Chem. 2019, 15, 2856–2863, doi:10.3762/bjoc.15.279

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  • to monomer, the reaction temperature T1, the amount of used catalyst and the concentration of reactants. Additionally, the CO2 uptake of the obtained polymers was explored. Results and Discussion The synthesis of HCPs is shown in Scheme 1 and Table 1. Using the FriedelCrafts reaction, 11 samples (P1
  • beneficial to the materials reuse. Conclusion Using the FriedelCrafts reaction, 9-PCz microporous polymers (P1–P11) were prepared by varying the molar ratio of cross-linker to monomer (P1–P5), the reaction temperature T1 (P3, P6, and P7), the amount of catalyst used (P3, P8, and P9) and the concentration of
  • area and pore volume analyzer. Polymers were degassed at 100 °C for over 10 h under vacuum before all gas analysis experiments. Synthesis HCPs The synthetic illustration of HCPs is depicted in Scheme 1. Using the FriedelCrafts reaction, P1–P11 have been made by changing the molar ratio of building
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Published 26 Nov 2019

Friedel–Crafts approach to the one-pot synthesis of methoxy-substituted thioxanthylium salts

  • Kenta Tanaka,
  • Yuta Tanaka,
  • Mami Kishimoto,
  • Yujiro Hoshino and
  • Kiyoshi Honda

Beilstein J. Org. Chem. 2019, 15, 2105–2112, doi:10.3762/bjoc.15.208

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  • . Keywords: FriedelCrafts reaction; metal-free conditions; one-pot synthesis; photoredox catalyst; thioxanthylium salt; Introduction Thioxanthylium salts are one of the important structural motifs found in biologically active compounds and photochemical materials [1][2][3][4][5][6][7][8]. Owing to these
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Published 05 Sep 2019

Reactions of 2-carbonyl- and 2-hydroxy(or methoxy)alkyl-substituted benzimidazoles with arenes in the superacid CF3SO3H. NMR and DFT studies of dicationic electrophilic species

  • Dmitry S. Ryabukhin,
  • Alexey N. Turdakov,
  • Natalia S. Soldatova,
  • Mikhail O. Kompanets,
  • Alexander Yu. Ivanov,
  • Irina A. Boyarskaya and
  • Aleksander V. Vasilyev

Beilstein J. Org. Chem. 2019, 15, 1962–1973, doi:10.3762/bjoc.15.191

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  • nab., 7/9, Saint Petersburg, 199034, Russian Federation 10.3762/bjoc.15.191 Abstract Reactions of 2-carbonyl- and 2-hydroxy(or methoxy)alkylbenzimidazoles with arenes in the Brønsted superacid TfOH resulted in the formation of the corresponding FriedelCrafts reaction products, 2-diarylmethyl and 2
  • Crafts reaction; triflic acid; Introduction Imidazoles and benzimidazoles are important heterocyclic scaffolds in pharmaceuticals and agrochemicals [1][2][3][4][5][6][7][8][9][10]. They also have applications in the fields of dyes, chemo-sensing, and fluorescent materials [3]. (Benz)imidazoles are a
  • . Then, we studied reactions of 2-hydroxyalkylbenzimidazoles 3a–c, 4, 7, and 8. It was found that these reactions needed extremely harsh reaction conditions, heating in neat TfOH at 140 °C in glass high pressure tubes (Table 4, Scheme 2). Only at this high temperature the formation of FriedelCrafts
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Published 19 Aug 2019
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