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Search for "arylglyoxals" in Full Text gives 10 result(s) in Beilstein Journal of Organic Chemistry.

Multicomponent reactions driving the discovery and optimization of agents targeting central nervous system pathologies

  • Lucía Campos-Prieto,
  • Aitor García-Rey,
  • Eddy Sotelo and
  • Ana Mallo-Abreu

Beilstein J. Org. Chem. 2024, 20, 3151–3173, doi:10.3762/bjoc.20.261

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  • -carboxamide-1,4-benzodiazepin-5-ones when enantiopure (S)-(−)-α-methylbenzylamine and arylglyoxals were used. Thus, a reversal of diastereoselectivity was observed depending on the cyclization methodology employed, the reduction of a nitro group or the Staudinger/aza-Wittig on azide derivatives. This
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Published 03 Dec 2024

Multicomponent syntheses of pyrazoles via (3 + 2)-cyclocondensation and (3 + 2)-cycloaddition key steps

  • Ignaz Betcke,
  • Alissa C. Götzinger,
  • Maryna M. Kornet and
  • Thomas J. J. Müller

Beilstein J. Org. Chem. 2024, 20, 2024–2077, doi:10.3762/bjoc.20.178

Graphical Abstract
  • , the yields could be significantly increased by controlling the order of addition of reactants. It is noteworthy that both electron-rich and electron-poor arylglyoxals and enaminones lead to high yields in the reaction sequence. Abid et al. developed a concise three-component synthesis method for
  • the method regioisomers 174 are selectively formed, while unsubstituted diesters (R2 = H) lead to pyrazoles 173 and 174 in a 1:2 ratio. The aforementioned method can be varied by generating β-diazoketones 176 from arylglyoxals and tosylhydrazine, thus making pyrazole 5-carboxylates accessible. Shu et
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Published 16 Aug 2024

The Groebke–Blackburn–Bienaymé reaction in its maturity: innovation and improvements since its 21st birthday (2019–2023)

  • Cristina Martini,
  • Muhammad Idham Darussalam Mardjan and
  • Andrea Basso

Beilstein J. Org. Chem. 2024, 20, 1839–1879, doi:10.3762/bjoc.20.162

Graphical Abstract
  • acetonitrile (not shown) led to the formation of benzoxazolpyrroles 106 (X = O) and indolizines (not shown), respectively. The GBB reaction is a powerful tool for the construction of imidazo[1,2,a]pyridines. Khan et al. [69] envisioned an isocyanide-free protocol based on arylglyoxals 107, 2-aminopyridines and
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Published 01 Aug 2024

Harnessing unprotected deactivated amines and arylglyoxals in the Ugi reaction for the synthesis of fused complex nitrogen heterocycles

  • Javier Gómez-Ayuso,
  • Pablo Pertejo,
  • Tomás Hermosilla,
  • Israel Carreira-Barral,
  • Roberto Quesada and
  • María García-Valverde

Beilstein J. Org. Chem. 2024, 20, 1758–1766, doi:10.3762/bjoc.20.154

Graphical Abstract
  • hurdles. Here, we have demonstrated the possibility of using the combination of arylglyoxals and carboxylic acids tethered to nonprotected deactivated amines as a powerful strategy for the synthesis of complex fused heterocycles. The limited nucleophilic character of the amino group of the anthranilic
  • strategies to easily generate multiple fused nitrogen heterocycles including benzodiazepinone and piperazinone cores. Keywords: arylglyoxals; deactivated amines; nitrogen heterocycles; Ugi reaction; Introduction Nitrogen heterocycles such as piperazines or diazepines represent important systems in the
  • protecting groups, as the reduced nucleophilic character of the amino group of the anthranilic acid would prevent its participation in the Ugi reaction. In this way, the Ugi reaction was performed using arylglyoxals 1, anthranilic acid derivatives 2, amines 3 and isocyanides 4 following the most common
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Published 25 Jul 2024

Functionalization of imidazole N-oxide: a recent discovery in organic transformations

  • Koustav Singha,
  • Imran Habib and
  • Mossaraf Hossain

Beilstein J. Org. Chem. 2022, 18, 1575–1588, doi:10.3762/bjoc.18.168

Graphical Abstract
  • through C–H/C–H coupling [10]. Also, in 2020, Valery P. Perevalov and team reported a three-component reaction of 2-unsubstituted imidazole N-oxides, arylglyoxals, and CH-acids [11]. However, the use of imidazole 1-oxides is not much unfolded till now among the science community. There were quite some
  • of 2-unsubstituted imidazole 1-oxides with arylglyoxals and CH-acids [11]. This procedure is convenient for the synthesis of pharmacologically important compounds containing furopyranone and furocoumarin scaffolds. With this method, extensive varieties of polyfunctional imidazole 1-oxides can be
  • arylglyoxals to investigate the scope of substrates. No products were obtained in case of the acyclic CH-acids like dimethyl malonate, acetylacetone, and ethyl acetoacetate under the same conditions. The reaction follows almost the same mechanistic pathway that was previously mentioned as three-component
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Published 22 Nov 2022

Regiodivergent synthesis of functionalized pyrimidines and imidazoles through phenacyl azides in deep eutectic solvents

  • Paola Vitale,
  • Luciana Cicco,
  • Ilaria Cellamare,
  • Filippo M. Perna,
  • Antonio Salomone and
  • Vito Capriati

Beilstein J. Org. Chem. 2020, 16, 1915–1923, doi:10.3762/bjoc.16.158

Graphical Abstract
  • -azido ketones in iPrOH in the presence of potassium ethylxanthate as a catalyst [28], (b) by exploiting the reaction of arylglyoxals with an excess amount of ammonium acetate in water [29], (c) by the cathodic reduction of 2-azido-1-phenylethanone in a DMF/LiClO4 medium [30], (d) by radical chain
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Published 05 Aug 2020

One-pot synthesis of substituted pyrrolo[3,4-b]pyridine-4,5-diones based on the reaction of N-(1-(4-hydroxy-6-methyl-2-oxo-2H-pyran-3-yl)-2-oxo-2-arylethyl)acetamide with amines

  • Valeriya G. Melekhina,
  • Andrey N. Komogortsev,
  • Boris V. Lichitsky,
  • Vitaly S. Mityanov,
  • Artem N. Fakhrutdinov,
  • Arkady A. Dudinov,
  • Vasily A. Migulin,
  • Yulia V. Nelyubina,
  • Elizaveta K. Melnikova and
  • Michail M. Krayushkin

Beilstein J. Org. Chem. 2019, 15, 2840–2846, doi:10.3762/bjoc.15.277

Graphical Abstract
  • -one (4), arylglyoxals 5, and acetamide (6) using SnCl2–SiO2 nanoparticles as heterogeneous catalyst under solvent-free conditions [10]. However, as we found out, the use of a catalyst was unnecessary for this transformation. In turn, refluxing the reaction mixture in acetonitrile was sufficient for
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Published 25 Nov 2019

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

Graphical Abstract
  • domino reaction of 5-aminopyrazoles 16, cyclic 1,3-diones 58 and arylglyoxals 98 under microwave irradiation. Triethylamine (20 mol %) as base and DMSO as solvent at 120 °C provided best results with high yields of pyrazolo[3,4-e]indolizines (a derivative of pyrazolo[3,4-b]pyridines) 102 (Scheme 30
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Published 25 Jan 2018

Isocyanide-based multicomponent reactions towards cyclic constrained peptidomimetics

  • Gijs Koopmanschap,
  • Eelco Ruijter and
  • Romano V.A. Orru

Beilstein J. Org. Chem. 2014, 10, 544–598, doi:10.3762/bjoc.10.50

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Published 04 Mar 2014

Silver and gold-catalyzed multicomponent reactions

  • Giorgio Abbiati and
  • Elisabetta Rossi

Beilstein J. Org. Chem. 2014, 10, 481–513, doi:10.3762/bjoc.10.46

Graphical Abstract
  • heterocyclic scaffolds were recently reported by the research groups of Liu and Fujii/Ohno. The Liu group developed a smart approach to furans starting from arylglyoxals 11, secondary amines and arylacetylenes in methanol under a nitrogen atmosphere [40]. In this reaction, the best catalyst was AuBr3 (5 mol
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Published 26 Feb 2014
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