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Search for "microwave-assisted synthesis" in Full Text gives 39 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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Published 22 Feb 2024

Application of N-heterocyclic carbene–Cu(I) complexes as catalysts in organic synthesis: a review

  • Nosheen Beig,
  • Varsha Goyal and
  • Raj K. Bansal

Beilstein J. Org. Chem. 2023, 19, 1408–1442, doi:10.3762/bjoc.19.102

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Published 20 Sep 2023

Clauson–Kaas pyrrole synthesis using diverse catalysts: a transition from conventional to greener approach

  • Dileep Kumar Singh and
  • Rajesh Kumar

Beilstein J. Org. Chem. 2023, 19, 928–955, doi:10.3762/bjoc.19.71

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  • -catalyzed Clauson–Kaas synthesis and plausible mechanism of pyrroles 53. Microwave-assisted synthesis of N-substituted pyrroles 55 in AcOH or water. Synthesis of pyrrole derivatives 57 using a nano-organocatalyst. Microwave-assisted synthesis of N-substituted pyrroles 59 in water. Iodine-catalyzed synthesis
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Published 27 Jun 2023

Silica gel and microwave-promoted synthesis of dihydropyrrolizines and tetrahydroindolizines from enaminones

  • Robin Klintworth,
  • Garreth L. Morgans,
  • Stefania M. Scalzullo,
  • Charles B. de Koning,
  • Willem A. L. van Otterlo and
  • Joseph P. Michael

Beilstein J. Org. Chem. 2021, 17, 2543–2552, doi:10.3762/bjoc.17.170

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  • with the microwave-assisted synthesis of 2,3-dihydro-1H-pyrrolizines from pyrrolidine-based enaminones suggested that the technique might also be suitable for preparing 5,6,7,8-tetrahydroindolizine analogues from the corresponding piperidine systems. In a preliminary investigation we prepared three
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Published 13 Oct 2021

Synthetic accesses to biguanide compounds

  • Oleksandr Grytsai,
  • Cyril Ronco and
  • Rachid Benhida

Beilstein J. Org. Chem. 2021, 17, 1001–1040, doi:10.3762/bjoc.17.82

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Published 05 May 2021

Microwave-assisted multicomponent reactions in heterocyclic chemistry and mechanistic aspects

  • Shivani Gulati,
  • Stephy Elza John and
  • Nagula Shankaraiah

Beilstein J. Org. Chem. 2021, 17, 819–865, doi:10.3762/bjoc.17.71

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  • the microwave-assisted synthesis of steroidal pyridines 123 utilizing steroidal ketones 122, aldehydes 5, malononitrile (51)/methyl cyanoacetate and ammonium acetate as structural units and MgO nanoparticles as a catalyst in ethanol solvent. The reaction proceeded even in absence of a catalyst but
  • product benzimidazoloimidazo[1,2-a]pyridine 136 was obtained by rearomatization of the intermediate C (Scheme 52). 8.2.2 Pyrazolopyridine: Quiroga and co-workers [123] envisioned an environmentally benign three-component microwave-assisted synthesis of pyrazolo[3,4-b]pyridine-5-spirocycloalkanedione 139
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Published 19 Apr 2021

Microwave-assisted synthesis of 2-substituted 4,5,6,7-tetrahydro-1,3-thiazepines from 4-aminobutanol

  • María C. Mollo,
  • Natalia B. Kilimciler,
  • Juan A. Bisceglia and
  • Liliana R. Orelli

Beilstein J. Org. Chem. 2020, 16, 32–38, doi:10.3762/bjoc.16.5

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Published 06 Jan 2020

Microwave-assisted synthesis of N,N-bis(phosphinoylmethyl)amines and N,N,N-tris(phosphinoylmethyl)amines bearing different substituents on the phosphorus atoms

  • Erika Bálint,
  • Anna Tripolszky,
  • László Hegedűs and
  • György Keglevich

Beilstein J. Org. Chem. 2019, 15, 469–473, doi:10.3762/bjoc.15.40

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Published 15 Feb 2019

Pd-Catalyzed microwave-assisted synthesis of phosphonated 13α-estrones as potential OATP2B1, 17β-HSD1 and/or STS inhibitors

  • Rebeka Jójárt,
  • Szabolcs Pécsy,
  • György Keglevich,
  • Mihály Szécsi,
  • Réka Rigó,
  • Csilla Özvegy-Laczka,
  • Gábor Kecskeméti and
  • Erzsébet Mernyák

Beilstein J. Org. Chem. 2018, 14, 2838–2845, doi:10.3762/bjoc.14.262

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Published 14 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

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Published 08 Oct 2018

Synthesis of pyrazolopyrimidinones using a “one-pot” approach under microwave irradiation

  • Mark Kelada,
  • John M. D. Walsh,
  • Robert W. Devine,
  • Patrick McArdle and
  • John C. Stephens

Beilstein J. Org. Chem. 2018, 14, 1222–1228, doi:10.3762/bjoc.14.104

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  • the microwave-assisted synthesis of substituted pyrazolo[1,5-a]pyrimidinones, a core scaffold in many bioactive and pharmaceutically relevant compounds, has been established. A variety of substituents was tolerated at the 2 and 5 positions, including functionalized aryls, heterocycles, and alkyl
  • groups. Keywords: microwave-assisted synthesis; nitrogen-fused heterocycle; one-pot; pyrimidinone; Introduction The pyrazolo[1,5-a]pyrimidinone is a fused nitrogen-containing heterocyclic system and is of interest due to its role as a basic core scaffold in many bioactive and pharmaceutically relevant
  • reaction conditions were chosen to match the already developed microwave-assisted synthesis of the 5-aminopyrazoles. A solution of the β-ketonitrile in methanol was treated with hydrazine and heated to 150 °C under microwave irradiation for 5 min. The β-ketoester and acetic acid were then simply added to
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Published 28 May 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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  • of NaCl from 2.5 to 10 mol % resulted in gradual increase of the yield of the desired product 63 from 85% to 89% and 93%, respectively (Scheme 14). Recently, Jiang et al. [61] have also developed a microwave-assisted synthesis of spiropyrazolo[3,4-b]pyridines 66 via a similar type of three-component
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Published 25 Jan 2018

Oxidative dehydrogenation of C–C and C–N bonds: A convenient approach to access diverse (dihydro)heteroaromatic compounds

  • Santanu Hati,
  • Ulrike Holzgrabe and
  • Subhabrata Sen

Beilstein J. Org. Chem. 2017, 13, 1670–1692, doi:10.3762/bjoc.13.162

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  • K-10 and Pd/C as catalysts. The microwave-assisted synthesis of β-carboline 96 from tetrahydro-β-carboline 95 using catalytic Pd/C and lithium carbonate at high temperature is also reported [96]. This high yielding procedure gets completed within a few minutes (Scheme 36). Although the reaction
  • mechanisms (radical and metal-catalyzed) of the transformation. Ferric chloride-catalyzed, TBHP-oxidized synthesis of substituted quinazolinones and arylquinazolines. Iridium-catalyzed oxidative dehydrogenation of quinolines. Microwave-assisted synthesis of β-carboline with a catalytic amount of Pd/C in
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Published 15 Aug 2017

1-Imidoalkylphosphonium salts with modulated Cα–P+ bond strength: synthesis and application as new active α-imidoalkylating agents

  • Jakub Adamek,
  • Roman Mazurkiewicz,
  • Anna Węgrzyk and
  • Karol Erfurt

Beilstein J. Org. Chem. 2017, 13, 1446–1455, doi:10.3762/bjoc.13.142

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  • 9aa, 9ab, 9bb, 9db, 9e, 9f, 9g, 9ia were recrystallized from toluene or toluene/hexane 1:1, v/v. Microwave assisted synthesis of N-(1-arylalkyl)imides 9: A suspension of the 1-(N-imido)alkyltriarylphosphonium salt 5 (0.25 mmol) in an aromatic compound (2.5 cm3) was placed in a glass vial sealed with a
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Published 24 Jul 2017

Fluorescent carbon dots from mono- and polysaccharides: synthesis, properties and applications

  • Stephen Hill and
  • M. Carmen Galan

Beilstein J. Org. Chem. 2017, 13, 675–693, doi:10.3762/bjoc.13.67

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  • glucose, this particular monosaccharide has been extensively used as an ideal carbon source for CD formation, under a range of experimental conditions. The microwave-assisted synthesis of FCDs from a glucose solution in the presence of poly(ethylene glycol)-200 (PEG-200) by Yang et al. is, to the best of
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Published 10 Apr 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

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  • 2-bromo-6-methoxy-3-phenyl-1-indanone (130, Scheme 41). An efficient microwave-assisted synthesis of 1-indanones 132a–s related to combretastatin A-4 has been proposed by Lawrence et al. [68]. Two of the indanones were obtained via a Nazarov cyclization of chalcones 131 without using microwaves, in
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Published 09 Mar 2017

Synthesis of spiro[isoindole-1,5’-isoxazolidin]-3(2H)-ones as potential inhibitors of the MDM2-p53 interaction

  • Salvatore V. Giofrè,
  • Santa Cirmi,
  • Raffaella Mancuso,
  • Francesco Nicolò,
  • Giuseppe Lanza,
  • Laura Legnani,
  • Agata Campisi,
  • Maria A. Chiacchio,
  • Michele Navarra,
  • Bartolo Gabriele and
  • Roberto Romeo

Beilstein J. Org. Chem. 2016, 12, 2793–2807, doi:10.3762/bjoc.12.278

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  • . Experimental General: Solvents and reagents are commercial. Microwave assisted synthesis was performed in a CEM Discover microwave oven using sealed reaction vessels. The temperature was monitored using a vertically focused IR temperature sensor. In order to have a homogenous system all the batches were
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Published 20 Dec 2016

Thiophene-forming one-pot synthesis of three thienyl-bridged oligophenothiazines and their electronic properties

  • Dominik Urselmann,
  • Konstantin Deilhof,
  • Bernhard Mayer and
  • Thomas J. J. Müller

Beilstein J. Org. Chem. 2016, 12, 2055–2064, doi:10.3762/bjoc.12.194

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  • ; copper; cyclic voltammetry; DFT; microwave-assisted synthesis; multicomponent reactions; palladium; phenothiazines; thiophenes; Introduction Oligothiophenes [1][2][3][4][5][6][7][8] have adopted a dominating role among functional π-electron systems [9]. In particular, they have received attention as
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Published 20 Sep 2016

Microwave-assisted cyclizations promoted by polyphosphoric acid esters: a general method for 1-aryl-2-iminoazacycloalkanes

  • Jimena E. Díaz,
  • María C. Mollo and
  • Liliana R. Orelli

Beilstein J. Org. Chem. 2016, 12, 2026–2031, doi:10.3762/bjoc.12.190

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  • of conventional heating [17]. In previous work, we reported the microwave-assisted synthesis of 5 to 8 membered cyclic amidines by cyclodehydration of N-aryl-N´-acyl-1,n-alkanediamines (n = 2–5) promoted by polyphosphoric acid (PPA) esters PPE and PPSE (Scheme 1, reaction 1) [41][42][43]. In this
  • 7 in good to high yields (Table 5). A clear steric effect on the reactivity was observed in the case of compound 7g (Table 5, entry 7), which resulted in low conversion of the substrate. Conclusion In summary, we have developed a straightforward and efficient protocol for the microwave-assisted
  • synthesis of 1-aryl-2-iminoazacycloalkanes, by ring closure of ω-arylaminonitriles promoted by PPA esters. This reaction constitutes a novel application of such reagents in heterocyclic synthesis. The procedure involves easily available starting materials and requires remarkably short reaction times. It
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Published 14 Sep 2016

Microwave-assisted synthesis of (aminomethylene)bisphosphine oxides and (aminomethylene)bisphosphonates by a three-component condensation

  • Erika Bálint,
  • Ádám Tajti,
  • Anna Dzielak,
  • Gerhard Hägele and
  • György Keglevich

Beilstein J. Org. Chem. 2016, 12, 1493–1502, doi:10.3762/bjoc.12.146

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Published 19 Jul 2016

Efficient synthetic protocols for the preparation of common N-heterocyclic carbene precursors

  • Morgan Hans,
  • Jan Lorkowski,
  • Albert Demonceau and
  • Lionel Delaude

Beilstein J. Org. Chem. 2015, 11, 2318–2325, doi:10.3762/bjoc.11.252

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  • size, N-substituents, and counterions [67]. In 2010, we have further optimized the microwave-assisted synthesis of SIMes·HCl to turn it into a convenient, laboratory-scale preparation [68]. With the latest implementation of our protocol, which uses an 80 mL glass vessel in a monomodal microwave reactor
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Published 25 Nov 2015

A facile synthetic route to benzimidazolium salts bearing bulky aromatic N-substituents

  • Gabriele Grieco,
  • Olivier Blacque and
  • Heinz Berke

Beilstein J. Org. Chem. 2015, 11, 1656–1666, doi:10.3762/bjoc.11.182

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  • ) Microwave assisted synthesis: NH4BF4, (EtO)3CH, 160 °C [47]. Proposed ring-closure mechanism for 1-Cl, 2-Cl, 3-Cl and 4-Cl. Comparison of various preparations of the benzannulated NHCs: 1-Cl, 2-Cl, 3-Cl and 4-Cl, and of 1-BF4, 3-BF4 and 4-BF4. Supporting Information Supporting Information File 275: CIF
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Published 17 Sep 2015

Matsuda–Heck reaction with arenediazonium tosylates in water

  • Ksenia V. Kutonova,
  • Marina E. Trusova,
  • Andrey V. Stankevich,
  • Pavel S. Postnikov and
  • Victor D. Filimonov

Beilstein J. Org. Chem. 2015, 11, 358–362, doi:10.3762/bjoc.11.41

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  • ; diazonium salts; Matsuda–Heck reaction; microwave-assisted synthesis; stilbenes; Introduction Diazonium salts are known as one of the most valuable building blocks in organic synthesis [1]. Today, their most common use is the construction of carbon–carbon bonds in palladium-catalyzed reactions. Starting
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Published 16 Mar 2015

Microwave-assisted Cu(I)-catalyzed, three-component synthesis of 2-(4-((1-phenyl-1H-1,2,3-triazol-4-yl)methoxy)phenyl)-1H-benzo[d]imidazoles

  • Yogesh Kumar,
  • Vijay Bahadur,
  • Anil K. Singh,
  • Virinder S. Parmar,
  • Erik V. Van der Eycken and
  • Brajendra K. Singh

Beilstein J. Org. Chem. 2014, 10, 1413–1420, doi:10.3762/bjoc.10.145

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  • Leuven (KU Leuven), Celestijnenlaan 200F, B-3001 Leuven, Belgium 10.3762/bjoc.10.145 Abstract A microwave-assisted synthesis of 2-(4-((1-phenyl-1H-1,2,3-triazol-4-yl)methoxy)phenyl)-1H-benzo[d]imidazoles from a phenylazide, propargyloxybenzaldehyde and a 1,2-diaminobenzene is proposed. Keywords
  • : benzimidazole; Cu(I) catalysis; microwave-assisted synthesis; multicomponent; three component synthesis; Introduction Due to their structural range and biological importance nitrogen-containing heterocycles have been striking targets for many years. They are found in a variety of natural products and are
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Published 24 Jun 2014

Consecutive isocyanide-based multicomponent reactions: synthesis of cyclic pentadepsipeptoids

  • Angélica de Fátima S. Barreto,
  • Otilie E. Vercillo,
  • Ludger A. Wessjohann and
  • Carlos Kleber Z. Andrade

Beilstein J. Org. Chem. 2014, 10, 1017–1022, doi:10.3762/bjoc.10.101

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  • structures are outlined in Figure 2. Results and Discussion In continuing our research on the synthesis of peptoids with potential pharmacological activity [12][17][18][44][45] and using a fast and efficient microwave-assisted synthesis of peptoids [15][17][18], we decided to carry out the synthesis of
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Published 05 May 2014
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