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Search for "1,4-diketone" in Full Text gives 10 result(s) in Beilstein Journal of Organic Chemistry.

Synthesis of tetrahydrofuro[3,2-c]pyridines via Pictet–Spengler reaction

  • Elena Y. Mendogralo and
  • Maxim G. Uchuskin

Beilstein J. Org. Chem. 2023, 19, 991–997, doi:10.3762/bjoc.19.74

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  • of some of the products was investigated and selected synthetic transformations of the obtained tetrahydrofuro[3,2-c]pyridines were shown. Keywords: acid hydrolysis; 1,4-diketone; tetrahydrofuro[3,2-c]pyridines; Paal–Knorr reaction; Pictet–Spengler reaction; Introduction Hydrogenated furo[3,2-c
  • hydrolysis of 4a was observed in most cases in trace amounts; an exception is entry 18 (Table 1), in which the 1,4-diketone 5a was isolated in 10% yield. With the optimized reaction conditions in hand, we investigated the scope of the developed tetrahydrofuro[3,2-c]pyridine synthesis. We found that a wide
  • optimized reaction conditions, in addition to the desired tetrahydrofuro[3,2-c]pyridine (4h), led to the major formation of the corresponding 1,4-diketone 5h. This unexpected formation of 3-(2-oxopropyl)piperidin-4-one (5h) led us to the idea that the tandem sequence Pictet–Spengler cyclization/furan acid
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Published 30 Jun 2023

Tuneable access to indole, indolone, and cinnoline derivatives from a common 1,4-diketone Michael acceptor

  • Dalel El-Marrouki,
  • Sabrina Touchet,
  • Abderrahmen Abdelli,
  • Hédi M’Rabet,
  • Mohamed Lotfi Efrit and
  • Philippe C. Gros

Beilstein J. Org. Chem. 2020, 16, 1722–1731, doi:10.3762/bjoc.16.144

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  • -tetrahydrocinnoline) derivatives in moderate to excellent yields. Keywords: cinnoline; 1,4-diketone; indole; indolone; N-heterocycle; Introduction Nitrogen-containing heterocycles are widespread in plenty of molecules of interest, either in materials science, optics, electronics, or biology [1][2][3][4]. They are
  • leading to the formation of the indolone 7 starts with an imine formation between the secondary amine and the nonconjugated carbonyl from the 1,4-diketone. After an imine–enamine equilibrium, an intramolecular 1,4-addition to the Michael acceptor part of the molecule occurs, followed by a prototropy
  • , leading to an intermediate enol that, after a keto–enol equilibrium and aromatization, gives the indolone 7. For the indole 6 and the cinnoline 8, the synthesis starts with the protonation of the oxygen atom of the conjugated carbonyl group of the 1,4-diketone, followed by an imine formation between the
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Published 17 Jul 2020

Cross-coupling of dissimilar ketone enolates via enolonium species to afford non-symmetrical 1,4-diketones

  • Keshaba N. Parida,
  • Gulab K. Pathe,
  • Shimon Maksymenko and
  • Alex M. Szpilman

Beilstein J. Org. Chem. 2018, 14, 992–997, doi:10.3762/bjoc.14.84

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  • Keshaba N. Parida Gulab K. Pathe Shimon Maksymenko Alex M. Szpilman Department of Chemical Sciences, Ariel University, 4070000 Ariel, Israel 10.3762/bjoc.14.84 Abstract Due to their closely matched reactivity, the coupling of two dissimilar ketone enolates to form a 1,4-diketone remains a
  • of enolates may be used to form the 1,4-diketone products in 38 to 74% yield. Due to the use of two TMS enol ethers as precursors, an optimization of the cross-coupling should include investigating the order of addition. Keywords: 1,4-diketones; enolates; enolonium species; hypervalent iodine
  • = H) to afford the 1,4-diketone 7 in 71% yield (Scheme 2) [31]. We therefore focused on identifying the minimum amount of the second enolate that would lead to optimal yields and found that as little as 1.2–1.4 equiv provided the desired 1,4-diketones in acceptable yields without the need for a large
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Published 03 May 2018

Electron-transfer-initiated benzoin- and Stetter-like reactions in packed-bed reactors for process intensification

  • Anna Zaghi,
  • Daniele Ragno,
  • Graziano Di Carmine,
  • Carmela De Risi,
  • Olga Bortolini,
  • Pier Paolo Giovannini,
  • Giancarlo Fantin and
  • Alessandro Massi

Beilstein J. Org. Chem. 2016, 12, 2719–2730, doi:10.3762/bjoc.12.268

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  • previous study on the benzoin condensation, the Stetter-like reaction of benzil (1a, 0.1 M) with chalcone 9a (0.05 M) was optimized at 70 °C with a flow rate of 5 μL min−1 (Table 5, entry 1). Because of the partial adsorption of the target 1,4-diketone 10aa onto the basic packing material 5, the reactor R5
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Published 13 Dec 2016

Rearrangements of organic peroxides and related processes

  • Ivan A. Yaremenko,
  • Vera A. Vil’,
  • Dmitry V. Demchuk and
  • Alexander O. Terent’ev

Beilstein J. Org. Chem. 2016, 12, 1647–1748, doi:10.3762/bjoc.12.162

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  • activities, including antibacterial, antiviral, antifungal, anti-allergic, anti-oxidant, and anti-inflammatory [348][349]. The treatment of endoperoxide 238 with Et3N gave 1,4-diketone 240 in quantitative yield instead of expected hydroxy ketone 239 (Scheme 73) [350][351][352]. The endoperoxide 238 is
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Published 03 Aug 2016

The chemistry of isoindole natural products

  • Klaus Speck and
  • Thomas Magauer

Beilstein J. Org. Chem. 2013, 9, 2048–2078, doi:10.3762/bjoc.9.243

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Published 10 Oct 2013

Organocatalytic asymmetric addition of malonates to unsaturated 1,4-diketones

  • Sergei Žari,
  • Tiiu Kailas,
  • Marina Kudrjashova,
  • Mario Öeren,
  • Ivar Järving,
  • Toomas Tamm,
  • Margus Lopp and
  • Tõnis Kanger

Beilstein J. Org. Chem. 2012, 8, 1452–1457, doi:10.3762/bjoc.8.165

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  • catalysts were screened in the reaction of phenyl disubstituted unsaturated 1,4-diketone 1a with diethyl malonate (2a, Table 1). The reaction was run in DCE at room temperature in the presence of 10 mol % of catalyst with a five-fold excess of malonate. In all cases, the yields of the products were very
  • ) was used. This did not influence the reaction time or the enantioselectivity, but afforded easier purification of the crude product. 1,4-Diketone 1a reacted smoothly with a variety of malonates 2a–2f, affording the products 3a–3f in high yields and with moderate to high stereoselectivities. In the
  • -substituent of unsaturated 1,4-diketone 1 on the reaction was investigated (Table 3). Electron-withdrawing groups, such as bromo and nitro, (Table 3, entries 10 and 13) as well as the electron-donating methoxy group (Table 3, entry 7) led to an increase in stereoselectivity, but the reaction time was also
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Published 04 Sep 2012

An overview of the key routes to the best selling 5-membered ring heterocyclic pharmaceuticals

  • Marcus Baumann,
  • Ian R. Baxendale,
  • Steven V. Ley and
  • Nikzad Nikbin

Beilstein J. Org. Chem. 2011, 7, 442–495, doi:10.3762/bjoc.7.57

Graphical Abstract
  • synthetic approach was based on the classical Paal–Knorr cyclocondensation of a highly substituted 1,4-diketone with a primary amine bearing a masked aldehyde functionality. The 1,4-diketone component, which can be accessed via a 3-step sequence [5] starting from aniline, was refluxed with 3
  • acceptor obtained from an initial Knoevenagel condensation (Scheme 5). In order to improve the overall yield as well as the convergency, the industrial route [7] introduced the fully elaborated side chain 34 by condensation with the previously described 1,4-diketone 31 (Scheme 5 and Scheme 6). The desired
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Published 18 Apr 2011

An expedient and new synthesis of pyrrolo[1,2-b]pyridazine derivatives

  • Rajeshwar Reddy Sagyam,
  • Ravinder Buchikonda,
  • Jaya Prakash Pitta,
  • Himabindu Vurimidi,
  • Pratap Reddy Padi and
  • Mahesh Reddy Ghanta

Beilstein J. Org. Chem. 2009, 5, No. 66, doi:10.3762/bjoc.5.66

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  • -methyl-3-oxo-pentanoic acid phenylamide with tertiary butyl carbazate and subsequent condensation of the resulting carbamate derivative with a chalcone provided a facile new approach to pyrrolo[1,2-b]pyridazine derivatives. Keywords: 1,4-diketone; migration and cyclization; pyrrolo[1,2-b]pyridazine
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Published 17 Nov 2009

A convenient synthesis of γ-functionalized cyclopentenones

  • Nour Lahmar,
  • Taïcir Ben Ayed,
  • Moncef Bellassoued and
  • Hassen Amri

Beilstein J. Org. Chem. 2005, 1, No. 11, doi:10.1186/1860-5397-1-11

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  • C9H14O4: 186.0892. Found: 186.0877. Preparation of γ-functionalized cyclopentenones (4): General procedure To a solution of 1,4-diketone 3 (5 mmol) in MeOH (10 mL) was added 1 equivalent of K2CO3, the mixture was bring to reflux during one hour. After workup, the product 4 was purified by column
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Published 07 Oct 2005
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