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Search for "Knoevenagel condensation" in Full Text gives 63 result(s) in Beilstein Journal of Organic Chemistry.

Multi-redox indenofluorene chromophores incorporating dithiafulvene donor and ene/enediyne acceptor units

  • Christina Schøttler,
  • Kasper Lund-Rasmussen,
  • Line Broløs,
  • Philip Vinterberg,
  • Ema Bazikova,
  • Viktor B. R. Pedersen and
  • Mogens Brøndsted Nielsen

Beilstein J. Org. Chem. 2024, 20, 59–73, doi:10.3762/bjoc.20.8

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  • as a mixture of E and Z isomers (ca. 4:1). Further functionalization of the IF-DTF ketone 11 was obtained by Ramirez/Corey–Fuchs dibromo-olefination and Knoevenagel condensation to yield vinylic dibromide 14 and diester 15, respectively, as illustrated in Scheme 2. We noted that the dibromo
  • 11 via Ramirez/Corey–Fuchs dibromo-olefination and Knoevenagel condensation. Coupling of 1,3-dithiole-2-thione building blocks 2 and 3 with fluorenone 5 to afford fluorene-extended DTFs 16 and 17. Synthesis of acetylenic scaffolds based on IF-DTF. Conditions: (a) Pd(PPh3)2Cl2, CuI, THF, Et3N, rt. (b
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Published 15 Jan 2024

Synthesis of 5-arylidenerhodanines in L-proline-based deep eutectic solvent

  • Stéphanie Hesse

Beilstein J. Org. Chem. 2023, 19, 1537–1544, doi:10.3762/bjoc.19.110

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  • Knoevenagel condensation of rhodanine with different aldehydes [3]. The reactions were performed in ChCl/urea (1:2) at 90 °C, without needing a catalyst and the products were obtained in low to good yields (10–78%). On another hand, ʟ-proline is well known as an organocatalyst and its use in aldol and
  • Knoevenagel condensation is well documented [21]. Moreover, the low cost and high availability of ʟ-proline has attracted attention to ʟ-proline-based DES. Especially, in 2022, Detsi [20] has synthesized and characterized three ʟ-proline-based NaDES: proline/oxalic acid (1:1), proline/glycerol (1:2), and
  • proline/lactic acid/water (1:2:2.5). The authors studied their use in the synthesis of aurones via a Knoevenagel condensation and compared them to the classical choline-based DES, ChCl/Gly (1:2). They demonstrated that the ʟ-proline-based DES were superior to ChCl/Gly and obtained aurones from the
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Published 04 Oct 2023

Facile access to 3-sulfonylquinolines via Knoevenagel condensation/aza-Wittig reaction cascade involving ortho-azidobenzaldehydes and β-ketosulfonamides and sulfones

  • Ksenia Malkova,
  • Andrey Bubyrev,
  • Stanislav Kalinin and
  • Dmitry Dar’in

Beilstein J. Org. Chem. 2023, 19, 800–807, doi:10.3762/bjoc.19.60

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  • have developed a new convenient protocol for the synthesis of 3-sulfonyl-substituted quinolines (sulfonamides and sulfones). The approach is based on a Knoevenagel condensation/aza-Wittig reaction cascade involving o-azidobenzaldehydes and ketosulfonamides or ketosulfones as key building blocks. The
  • , the method for the synthesis of 3-acyl-substituted quinolines from o-azidobenzaldehydes and 1,3-dicarbonyl compounds was reported [70][71] (Figure 2a). A combination of Knoevenagel condensation and aza-Wittig reaction allowed to build up target products in high yields. In case of [70], the procedure
  • quinolines (sulfonamides and sulfones) (Figure 2b). Herein, we report the successful implementation of this approach. Results and Discussion The Knoevenagel condensation/aza-Wittig reaction cascade was used for the preparation of 3-sulfonyl-substituted quinolines. The process proceeds in a domino fashion
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Published 09 Jun 2023

Combretastatins D series and analogues: from isolation, synthetic challenges and biological activities

  • Jorge de Lima Neto and
  • Paulo Henrique Menezes

Beilstein J. Org. Chem. 2023, 19, 399–427, doi:10.3762/bjoc.19.31

Graphical Abstract
  • reaction [33]. Thus, Knoevenagel condensation using the diaryl ether 29 and malonic acid gave the corresponding α,β-unsaturated compound 30, which was submitted to a concomitant hydrogenation of the double bond and the nitro group to give compound 31. Sequential diazotization/halogenation and
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Published 29 Mar 2023

Sequential hydrozirconation/Pd-catalyzed cross coupling of acyl chlorides towards conjugated (2E,4E)-dienones

  • Benedikt Kolb,
  • Daniela Silva dos Santos,
  • Sanja Krause,
  • Anna Zens and
  • Sabine Laschat

Beilstein J. Org. Chem. 2023, 19, 176–185, doi:10.3762/bjoc.19.17

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  • from a haliclona marine sponge [4], and vertinolide (5) from Verticillium intertextum [5] (Scheme 1). As outlined in Scheme 2, a variety of methods has been reported for the synthesis of conjugated dienones, mostly via addition/elimination reactions such as Knoevenagel condensation or Claisen–Schmidt
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Published 17 Feb 2023

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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  • different kinds of aromatic aldehydes and 5-arylidene-1,3-dimethylbarbituric acids. 5-Arylidene-1,3-dimethylbarbituric acids could be easily generated through Knoevenagel condensation of aromatic aldehydes and 1,3-dimethylbarbituric acid under the catalysis of Lewis acid. We envisioned whether the desired
  • 3-substituted indole, which undergoes dehydration to form the key intermediate indole-based ortho-quinodimethanes (o-QDMs, A). In the meantime, the cyclic 1,3-diones and aromatic aldehyde undergo Knoevenagel condensation to afford the different kinds of dienophiles. Subsequently, the Diels–Alder
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Published 07 Jul 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

Graphical Abstract
  • molecules through π–π stacking with the hydrophobic aromatic wall of the host. Finally, the boat was investigated as a catalyst for the Knoevenagel condensation reaction (Figure 2) of a series of aromatic aldehydes with 1,3-dimethylbarbituric acid and Meldrum’s acid in aqueous media. One of the primary
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Published 27 May 2022

Icilio Guareschi and his amazing “1897 reaction”

  • Gian Cesare Tron,
  • Alberto Minassi,
  • Giovanni Sorba,
  • Mara Fausone and
  • Giovanni Appendino

Beilstein J. Org. Chem. 2021, 17, 1335–1351, doi:10.3762/bjoc.17.93

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  • to name type-I Guareschi pyridone synthesis the two-component reaction between a β-aminocarbonyl and a cyanoacetic ester, a reaction first reported in 1893 [34]. It is a classic combination of a Knoevenagel condensation and ester aminolysis typical for many heterocyclic syntheses. The type-II
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Published 25 May 2021

A comprehensive review of flow chemistry techniques tailored to the flavours and fragrances industries

  • Guido Gambacorta,
  • James S. Sharley and
  • Ian R. Baxendale

Beilstein J. Org. Chem. 2021, 17, 1181–1312, doi:10.3762/bjoc.17.90

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Published 18 May 2021

Application of the Meerwein reaction of 1,4-benzoquinone to a metal-free synthesis of benzofuropyridine analogues

  • Rashmi Singh,
  • Tomas Horsten,
  • Rashmi Prakash,
  • Swapan Dey and
  • Wim Dehaen

Beilstein J. Org. Chem. 2021, 17, 977–982, doi:10.3762/bjoc.17.79

Graphical Abstract
  • presence of a catalytic amount of piperidine afforded pyridopsoralen 22 in 46% yield. Analogously, pyridopsoralen 23 was prepared from 16 by Knoevenagel condensation with diethyl malonate and subsequent lactonization with 62% yield (Scheme 4) [13]. To the best of our understanding, the scaffolds 21–23 are
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Published 30 Apr 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

Graphical Abstract
  • -MCRs and their mechanistic insights over the past decade and shed light on its advantage over the conventional approach. Keywords: cycloaddition; Knoevenagel condensation; Michael addition; microwave; multicomponent reactions; Introduction Recently, organic chemists are focussed to develop
  • moderate to good yields under catalyst-free conditions (Scheme 1). A rationale of mechanism proposed the transformation via a Knoevenagel condensation between aldehyde and a molecule of 6 affording A. The concurrent condensation of ammonium acetate with another molecule of 6 led to the formation of an
  • synthesis of 3-functionalized indoles 34 by employing amines 32, arylglyoxal monohydrate 33 and cyclic 1,3-diketones 6 under microwave irradiation in the greener solvent system EtOH/H2O (Scheme 10). A plausible mechanism (Scheme 11) suggests a TFA-catalyzed Knoevenagel condensation between 4-hydroxy-6
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Published 19 Apr 2021

Synthesis and characterization of S,N-heterotetracenes

  • Astrid Vogt,
  • Florian Henne,
  • Christoph Wetzel,
  • Elena Mena-Osteritz and
  • Peter Bäuerle

Beilstein J. Org. Chem. 2020, 16, 2636–2644, doi:10.3762/bjoc.16.214

Graphical Abstract
  • -thienylcarbaldehyde (23), which was put to reaction with methyl 2-azidoactetate [46] and sodium methanolate in a Knoevenagel condensation to give azide 24 in 81% yield. A solution of the azide 24 was added to boiling toluene and cyclization to thienopyrrole 25 occurred via a nitrene intermediate in nearly
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Published 26 Oct 2020

Heterogeneous photocatalysis in flow chemical reactors

  • Christopher G. Thomson,
  • Ai-Lan Lee and
  • Filipe Vilela

Beilstein J. Org. Chem. 2020, 16, 1495–1549, doi:10.3762/bjoc.16.125

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Published 26 Jun 2020

Fluorinated phenylalanines: synthesis and pharmaceutical applications

  • Laila F. Awad and
  • Mohammed Salah Ayoup

Beilstein J. Org. Chem. 2020, 16, 1022–1050, doi:10.3762/bjoc.16.91

Graphical Abstract
  • improve protein stability, natural hydrocarbon amino acids were replaced with Pff 77a. The effect of enhanced protein stability upon this replacement is referred as to ‘fluoro-stabilization effect’ [56]. 1.7. Knoevenagel condensation of methyl isocyanoacetate Three isomers of fluorinated phenylalanines
  • 53a,b and 81 were synthesized by Knoevenagel condensation of methyl isocyanoacetate (79) and the corresponding fluorinated benzaldehyde derivatives 50a,b, and m-fluorobenzaldehyde (78) as electrophiles in the presence of catalytic amounts of Cu(I) and base. The cinnamate derivatives 80a–c obtained
  • -borono-2-[18F]FPhe. Synthesis of protected 4-[18F]FPhe via arylstannane derivatives. Synthesis of FPhe derivatives via intermediate imine formation. Synthesis of FPhe derivatives via Knoevenagel condensation. Synthesis of FPhe derivatives 88a,b from aspartic acid derivatives. Synthesis of 2-(2
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Published 15 May 2020

Synthesis of 4-(2-fluorophenyl)-7-methoxycoumarin: experimental and computational evidence for intramolecular and intermolecular C–F···H–C bonds

  • Vuyisa Mzozoyana,
  • Fanie R. van Heerden and
  • Craig Grimmer

Beilstein J. Org. Chem. 2020, 16, 190–199, doi:10.3762/bjoc.16.22

Graphical Abstract
  • , numerous methods for the synthesis of these compounds have been developed, examples are the Pechmann condensation [10][11], Stille coupling reaction [12], Knoevenagel condensation [13], Heck coupling reaction [14], Kostanecki reaction, Baylis–Hillman reaction [15], Michael reaction [16], Suzuki–Miyaura
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Published 10 Feb 2020

Diversity-oriented synthesis of spirothiazolidinediones and their biological evaluation

  • Sambasivarao Kotha,
  • Gaddamedi Sreevani,
  • Lilya U. Dzhemileva,
  • Milyausha M. Yunusbaeva,
  • Usein M. Dzhemilev and
  • Vladimir A. D’yakonov

Beilstein J. Org. Chem. 2019, 15, 2774–2781, doi:10.3762/bjoc.15.269

Graphical Abstract
  • synthesis of thiazolidinedione derivatives is refluxing chloroacetic acid (2) with thiourea (1), followed by a Knoevenagel condensation with an aldehyde (Scheme 1) [25]. Results and Discussion Limited reports are available dealing with the synthesis of spiro derivatives of thiazolidine-2,4-diones [26][27
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Published 18 Nov 2019

Identification of optimal fluorescent probes for G-quadruplex nucleic acids through systematic exploration of mono- and distyryl dye libraries

  • Xiao Xie,
  • Michela Zuffo,
  • Marie-Paule Teulade-Fichou and
  • Anton Granzhan

Beilstein J. Org. Chem. 2019, 15, 1872–1889, doi:10.3762/bjoc.15.183

Graphical Abstract
  • Knoevenagel condensation of the corresponding heterocyclic precursors I1–5 and I7–16 with 1.5 molar equivalents (per styryl unit) of aromatic aldehydes ArCHO (Scheme 1A,B). The synthesis of precursors I3–5 and I15 is presented in Scheme 2 and detailed in Supporting Information File 1. Dyes 6a and 19a, which
  • , B) General synthesis of A) distyryl and B) mono-styryl dyes via Knoevenagel condensation route. C) Synthesis of the dye 6a. D) Synthesis of the dye 19a. Synthesis of I3–5 and I15. Positions of maxima and intensity of long-wavelength absorption bands of dyes in MeOH and K-100 aqueous buffer.a Nucleic
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Published 06 Aug 2019

A golden opportunity: benzofuranone modifications of aurones and their influence on optical properties, toxicity, and potential as dyes

  • Joza Schmitt and
  • Scott T. Handy

Beilstein J. Org. Chem. 2019, 15, 1781–1785, doi:10.3762/bjoc.15.171

Graphical Abstract
  • of new aurones by way of the common Knoevenagel condensation approach, mostly varying in the benzylidene portion. To explore benzofuranone variations using this method, different benzofuranone starting materials are required. Although not likely to be the most colorful, we elected for simplicity’s
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Published 25 Jul 2019

Functional panchromatic BODIPY dyes with near-infrared absorption: design, synthesis, characterization and use in dye-sensitized solar cells

  • Quentin Huaulmé,
  • Cyril Aumaitre,
  • Outi Vilhelmiina Kontkanen,
  • David Beljonne,
  • Alexandra Sutter,
  • Gilles Ulrich,
  • Renaud Demadrille and
  • Nicolas Leclerc

Beilstein J. Org. Chem. 2019, 15, 1758–1768, doi:10.3762/bjoc.15.169

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  • dehalogenation side-product. Finally, a Knoevenagel condensation in the presence of cyanoacetic acid and piperidine is performed to lead to the targeted compounds BOD-TTPA-alk and BOD-TTPA. 3. Optical properties The optical properties of compounds BOD-TTPA-alk and BOD-TTPA were first evaluated in diluted (≈10−6
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Published 24 Jul 2019

Recent advances on the transition-metal-catalyzed synthesis of imidazopyridines: an updated coverage

  • Gagandeep Kour Reen,
  • Ashok Kumar and
  • Pratibha Sharma

Beilstein J. Org. Chem. 2019, 15, 1612–1704, doi:10.3762/bjoc.15.165

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Published 19 Jul 2019

Unexpected polymorphism during a catalyzed mechanochemical Knoevenagel condensation

  • Sebastian Haferkamp,
  • Andrea Paul,
  • Adam A. L. Michalchuk and
  • Franziska Emmerling

Beilstein J. Org. Chem. 2019, 15, 1141–1148, doi:10.3762/bjoc.15.110

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  • transformation of a base-catalyzed, mechano-assisted Knoevenagel condensation of mono-fluorinated benzaldehyde derivatives (p-, m-, o-benzaldehyde) with malonodinitrile was investigated in situ and in real time. Upon milling, the para-substituted product was found to crystallize initially into two different
  • led directly to formation of m3b [23] and m3c [28], respectively, at both 30 Hz and 50 Hz milling frequency (Figures S4 and S5 in Supporting Information File 1). Conclusion The mechano-assisted catalyzed Knoevenagel condensation of mono-fluorinated benzaldehydes and malonodinitrile was explored in
  • products of 3a. Red: peak off the molecular ion [M + H]+ of piperidine (m/z ≈ 86). Blue: peak of the molecular ion [M + H]+ of 3a (m/z ≈ 173). a) In situ XRPD pattern of the mechanochemical Knoevenagel condensation of 1a and 2 with 2 µL catalyst at 50 Hz. Gray box: intermediate phase. b) In situ XRPD
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Published 21 May 2019

Mn-mediated sequential three-component domino Knoevenagel/cyclization/Michael addition/oxidative cyclization reaction towards annulated imidazo[1,2-a]pyridines

  • Olga A. Storozhenko,
  • Alexey A. Festa,
  • Delphine R. Bella Ndoutoume,
  • Alexander V. Aksenov,
  • Alexey V. Varlamov and
  • Leonid G. Voskressensky

Beilstein J. Org. Chem. 2018, 14, 3078–3087, doi:10.3762/bjoc.14.287

Graphical Abstract
  • single crystal X-ray diffraction study (Figure 2). The sequential domino reaction presumably starts with the Knoevenagel condensation of o-hydroxybenzaldehyde and N-(cyanomethyl)pyridinium salt forming styryl derivative A, which undergoes intramolecular cyclization to give 2-iminochromene salt 3
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Published 19 Dec 2018

Synthesis of indole–cycloalkyl[b]pyridine hybrids via a four-component six-step tandem process

  • Muthumani Muthu,
  • Rakkappan Vishnu Priya,
  • Abdulrahman I. Almansour,
  • Raju Suresh Kumar and
  • Raju Ranjith Kumar

Beilstein J. Org. Chem. 2018, 14, 2907–2915, doi:10.3762/bjoc.14.269

Graphical Abstract
  • 8.16 ppm (J = 3.0 Hz) due to 2′-CH proton. A persuasive mechanism to justify the formation of indole–cyclododeca[b]pyridine-3-carbonitrile hybrid 7f is depicted in Scheme 2. Initially, the Knoevenagel condensation of 3-(1H-indol-3-yl)-3-oxopropanenitrile (3a) and 4-chlorobenzaldehyde (4f) leads to the
  • Department of Chemistry, College of Science, King Saud University, Riyadh 11451, Saudi Arabia 10.3762/bjoc.14.269 Abstract The one-pot four-component reaction of 3-(1H-indol-3-yl)-3-oxopropanenitriles, aromatic aldehydes, cycloalkanones and ammonium acetate occurred via a six-step tandem Knoevenagel
  • condensation–nucleophilic addition to carbonyl–Michael addition–N-cyclization–elimination–air oxidation sequence to afford structurally intriguing indole–cycloalkyl[b]pyridine-3-carbonitrile hybrid heterocycles in excellent yields. Keywords: cycloalkyl[b]pyridine-3-carbonitrile; cyclododecanone; 3-(1H-indol-3
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Published 22 Nov 2018

Unnatural α-amino ethyl esters from diethyl malonate or ethyl β-bromo-α-hydroxyiminocarboxylate

  • Eloi P. Coutant,
  • Vincent Hervin,
  • Glwadys Gagnot,
  • Candice Ford,
  • Racha Baatallah and
  • Yves L. Janin

Beilstein J. Org. Chem. 2018, 14, 2853–2860, doi:10.3762/bjoc.14.264

Graphical Abstract
  • instance, from diethyl malonate (4) and an alkylation reaction or a Knoevenagel condensation–reduction sequence (Scheme 1). Results and Discussion As depicted in Table 1, Knoevenagel condensations of diethyl malonate (4) and aldehydes 5a–al followed by reduction of the intermediate alkylidenemalonates 6a
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Published 16 Nov 2018

Gold-catalyzed post-Ugi alkyne hydroarylation for the synthesis of 2-quinolones

  • Xiaochen Du,
  • Jianjun Huang,
  • Anton A. Nechaev,
  • Ruwei Yao,
  • Jing Gong,
  • Erik V. Van der Eycken,
  • Olga P. Pereshivko and
  • Vsevolod A. Peshkov

Beilstein J. Org. Chem. 2018, 14, 2572–2579, doi:10.3762/bjoc.14.234

Graphical Abstract
  • synthesis of 2-quinolones using either intramolecular Heck reaction [60] or Knoevenagel condensation [61][62]. Results and Discussion We began our study with the preparation of the model substrate 7a through the Ugi reaction of tetrolic acid (3a), benzaldehyde (4a), tert-butyl isocyanide (5a) and 3,5
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Published 04 Oct 2018
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