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Search for "hydrazones" in Full Text gives 76 result(s) in Beilstein Journal of Organic Chemistry.

Methodologies for the synthesis of quaternary carbon centers via hydroalkylation of unactivated olefins: twenty years of advances

  • Thiago S. Silva and
  • Fernando Coelho

Beilstein J. Org. Chem. 2021, 17, 1565–1590, doi:10.3762/bjoc.17.112

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  • isotopically-labeled hydrazides could also be employed. Notably, this methodology considerably shortened the existing synthetic routes for adding a methyl group to olefins. More recently, the Bradshaw group has been exploring the potential use of tosyl hydrazones in reductive couplings with olefins initiated
  • via metal hydride atom transfer [96][97]. In 2020, they realized that formal hydroalkylated products could be obtained by coupling substituted tosyl hydrazones with olefins (Scheme 29) [98], similarly to the hydromethylation protocol developed by Baran [95] (Scheme 28). The higher stability of the
  • substituted hydrazones obviated their generation in situ, and as ethanol was identified as a better solvent in the initial coupling step, no solvent exchange was necessary in the fragmentation step of the hydrazide intermediate. The addition of triethylamine and heating the reaction to 80 °C for 1 hour were
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Published 07 Jul 2021

A straightforward conversion of 1,4-quinones into polycyclic pyrazoles via [3 + 2]-cycloaddition with fluorinated nitrile imines

  • Greta Utecht-Jarzyńska,
  • Karolina Nagła,
  • Grzegorz Mlostoń,
  • Heinz Heimgartner,
  • Marcin Palusiak and
  • Marcin Jasiński

Beilstein J. Org. Chem. 2021, 17, 1509–1517, doi:10.3762/bjoc.17.108

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  • bromination of the corresponding trifluoroacetaldehyde hydrazones in dry DMF at room temperature as described in an earlier publication [21]. The latter arylhydrazones were obtained according to a general literature protocol by condensation of aqueous fluoral hydrate (≈75% in H2O) with commercially available
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Published 28 Jun 2021

Recent advances in palladium-catalysed asymmetric 1,4–additions of arylboronic acids to conjugated enones and chromones

  • Jan Bartáček,
  • Jan Svoboda,
  • Martin Kocúrik,
  • Jaroslav Pochobradský,
  • Alexander Čegan,
  • Miloš Sedlák and
  • Jiří Váňa

Beilstein J. Org. Chem. 2021, 17, 1048–1085, doi:10.3762/bjoc.17.84

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  • . Optically pure pyridine-hydrazones were successfully used for a number of various enantioselective transformations [62]. In 2019, Retamosa et al. used them for 1,4- and 1,6-addition reactions of boronic acids to cyclic (di)enones. Initial studies showed the best yields when DCE was used as a solvent upon
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Published 10 May 2021

[2 + 1] Cycloaddition reactions of fullerene C60 based on diazo compounds

  • Yuliya N. Biglova

Beilstein J. Org. Chem. 2021, 17, 630–670, doi:10.3762/bjoc.17.55

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  • voltammetry. One of the approaches for in situ generation of unstable diazo compounds involves the use of stable hydrazones, followed by their oxidation with MnO2. For example, the scientists led by van Koten and co-workers synthesized a group of methanofullerenes with monoanionic terdentate diaminoaryl
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Published 05 Mar 2021

Unexpected rearrangements and a novel synthesis of 1,1-dichloro-1-alkenones from 1,1,1-trifluoroalkanones with aluminium trichloride

  • Beatrice Lansbergen,
  • Catherine S. Meister and
  • Michael C. McLeod

Beilstein J. Org. Chem. 2021, 17, 404–409, doi:10.3762/bjoc.17.36

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  • dichloroalkenes [18][19][20]. The preparation of 1,1-dichloro-1-alkenes from hydrazones [21] and from 2,2,2-trichloroethyl carbonates [22] has also been reported. Internal difluoroalkanes have been used to generate chloroalkene products using AlEt2Cl [23][24]. In this article we describe the AlCl3-mediated
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Published 10 Feb 2021

Recent developments in enantioselective photocatalysis

  • Callum Prentice,
  • James Morrisson,
  • Andrew D. Smith and
  • Eli Zysman-Colman

Beilstein J. Org. Chem. 2020, 16, 2363–2441, doi:10.3762/bjoc.16.197

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Published 29 Sep 2020

Synthesis of new dihydroberberine and tetrahydroberberine analogues and evaluation of their antiproliferative activity on NCI-H1975 cells

  • Giacomo Mari,
  • Lucia De Crescentini,
  • Serena Benedetti,
  • Francesco Palma,
  • Stefania Santeusanio and
  • Fabio Mantellini

Beilstein J. Org. Chem. 2020, 16, 1606–1616, doi:10.3762/bjoc.16.133

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  • arylhydrazono-DHBERs and -THBERs has been evaluated on NCI-H1975 lung cancer cells. Keywords: antiproliferative agent; dihydroberberine; hydrazones; reduction; tetrahydroberberine; Introduction The rhizome of Coptis chinensis Franch. is a common remedy in traditional oriental medicine for the treatment of
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Published 06 Jul 2020

Oxime radicals: generation, properties and application in organic synthesis

  • Igor B. Krylov,
  • Stanislav A. Paveliev,
  • Alexander S. Budnikov and
  • Alexander O. Terent’ev

Beilstein J. Org. Chem. 2020, 16, 1234–1276, doi:10.3762/bjoc.16.107

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Published 05 Jun 2020

Photocatalysis with organic dyes: facile access to reactive intermediates for synthesis

  • Stephanie G. E. Amos,
  • Marion Garreau,
  • Luca Buzzetti and
  • Jerome Waser

Beilstein J. Org. Chem. 2020, 16, 1163–1187, doi:10.3762/bjoc.16.103

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  • oxidant but a strong reductant (E(PC*/PC•−) = +0.90 and E(PC/PC•−) = −1.65 V vs SCE) [155]. As another class of nitrogen radicals, hydrazonyl radicals can be formed from the direct N–H bond oxidation of the hydrazones 37.1, as reported by the Xiao group (Scheme 37) [156]. This strategy was based on a
  • cooperative TEMPO and photoredox catalysis. The SET oxidation of the anion of the β,γ-unsaturated hydrazones 37.1 is mediated by TEMPO+, itself formed by an SET oxidation with the excited state of Mes-Acr-Me+ (OD2). The pyrazolines 37.2 are formed through an intramolecular addition to the alkene, followed by
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Published 29 May 2020

Ultrafast processes triggered by one- and two-photon excitation of a photochromic and luminescent hydrazone

  • Alessandro Iagatti,
  • Baihao Shao,
  • Alberto Credi,
  • Barbara Ventura,
  • Ivan Aprahamian and
  • Mariangela Di Donato

Beilstein J. Org. Chem. 2019, 15, 2438–2446, doi:10.3762/bjoc.15.236

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  • through two-photon fluorescence measurements [29]. Conclusion Hydrazones are a promising new class of molecular photoswitches. In this work we investigated the spectroscopic properties of hydrazone 1, a member of this family showing very interesting properties, such as high-isomerization quantum yield
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Published 15 Oct 2019

Recent advances in transition-metal-catalyzed incorporation of fluorine-containing groups

  • Xiaowei Li,
  • Xiaolin Shi,
  • Xiangqian Li and
  • Dayong Shi

Beilstein J. Org. Chem. 2019, 15, 2213–2270, doi:10.3762/bjoc.15.218

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Published 23 Sep 2019

Molecular iodine-catalyzed one-pot multicomponent synthesis of 5-amino-4-(arylselanyl)-1H-pyrazoles

  • Camila S. Pires,
  • Daniela H. de Oliveira,
  • Maria R. B. Pontel,
  • Jean C. Kazmierczak,
  • Roberta Cargnelutti,
  • Diego Alves,
  • Raquel G. Jacob and
  • Ricardo F. Schumacher

Beilstein J. Org. Chem. 2018, 14, 2789–2798, doi:10.3762/bjoc.14.256

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  • -phenylselanyl-1H-pyrazoles through reaction of α,β-alkynic hydrazones with phenylselenyl chloride [11]. In this context, pyrazoles are one of the most important N-heterocycles found in natural products including formycin, pyrazofurin and withasomnine, for example. Still, pyrazole unities are present in several
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Published 06 Nov 2018

Synthesis of a tyrosinase inhibitor by consecutive ethenolysis and cross-metathesis of crude cashew nutshell liquid

  • Jacqueline Pollini,
  • Valentina Bragoni and
  • Lukas J. Gooßen

Beilstein J. Org. Chem. 2018, 14, 2737–2744, doi:10.3762/bjoc.14.252

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  • ]. A limited number of derivatizations of anacardic acid are reported by now, including the synthesis of lactones [18][19][20], sulfonamides [21] or hydrazones [22], typically bioactive compounds though with low commercial value. However, several studies suggest that anacardic acid and its derivatives
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Published 31 Oct 2018

Novel photochemical reactions of carbocyclic diazodiketones without elimination of nitrogen – a suitable way to N-hydrazonation of C–H-bonds

  • Liudmila L. Rodina,
  • Xenia V. Azarova,
  • Jury J. Medvedev,
  • Dmitrij V. Semenok and
  • Valerij A. Nikolaev

Beilstein J. Org. Chem. 2018, 14, 2250–2258, doi:10.3762/bjoc.14.200

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  • %. Further irradiation of hydrazones derived from furan-fused tricyclic diazocyclopentanediones culminates in the cycloelimination of furans to yield 2-N-(alkyl)hydrazone of cyclopentene-1,2,3-trione. By contrast, the direct photolysis of carbocyclic diazodiketones gives only Wolff rearrangement products
  • the diazo group nitrogen atoms in the structure of the reaction products was discovered by our group. The sensitized photoexcitation of heterocyclic diazoketones – diazotetrahydrofuranones resulted in the formation of N-alkyl-substituted hydrazones and other nitrogen-containing compounds [27][28][29
  • yields of hydrazones 2, an effort was undertaken to optimize the photochemical reaction conditions by varying the wavelength of irradiation, sensitizer, as well as the ratio of sensitizer/diazodiketone 1b (Table 1, entries 4–9). As can be seen from the data in Table 1 the most effective sensitizer for
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Published 28 Aug 2018

Synthesis of new tricyclic 5,6-dihydro-4H-benzo[b][1,2,4]triazolo[1,5-d][1,4]diazepine derivatives by [3+ + 2]-cycloaddition/rearrangement reactions

  • Lin-bo Luan,
  • Zi-jie Song,
  • Zhi-ming Li and
  • Quan-rui Wang

Beilstein J. Org. Chem. 2018, 14, 1826–1833, doi:10.3762/bjoc.14.155

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  • furnishing the tricyclic 1,2,4-triazole-fused 1,4-benzodiazepines. Keywords: 1,4-benzodiazepine (BDZ); cyclization; hydrazones; oxidation; rearrangement; Introduction Heterocyclic compounds comprising a 1,4-benzodiazepine (BDZ) ring have been a topic of continued interest as they exhibit a wide spectrum of
  • the quinolones 6 and phenylhydrazine with a catalytic amount of AcOH in refluxing n-propyl alcohol. Subsequently, the hydrazones 7 were converted into the 4-acetoxy-1-acetyl-4-phenylazo-1,2,3,4-tetrahydroquinolines 8 via the oxidation with hypervalent iodine(III) reagent PhI(OAc)2 (Scheme 2) [45]. The
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Published 18 Jul 2018

Carbohydrate inhibitors of cholera toxin

  • Vajinder Kumar and
  • W. Bruce Turnbull

Beilstein J. Org. Chem. 2018, 14, 484–498, doi:10.3762/bjoc.14.34

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  • library of glycopolymers employing exchangeable galactosyl or mannosyl hydrazide functions in conjunction with pendant benzaldehyde groups on the polymer backbone to produce exchangeable hydrazones, e.g., 40 (Figure 18) [69]. They were able to show that in the presence of LTB, the E. coli homologue of CTB
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Published 21 Feb 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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Published 25 Jan 2018

Progress in copper-catalyzed trifluoromethylation

  • Guan-bao Li,
  • Chao Zhang,
  • Chun Song and
  • Yu-dao Ma

Beilstein J. Org. Chem. 2018, 14, 155–181, doi:10.3762/bjoc.14.11

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  • achieved the incorporation of CF3 into N,N-dialkylhydrazones using Togni’s reagent as a trifluoromethyl source in the presence of simple copper chloride (Scheme 33). Various hydrazones with an electron-donating dialkylamino group including 1-piperidinyl and 4-morpholinyl participated efficiently in this
  • reaction. Irrespective of the phenyl group was substituted by an electron-withdrawing or -donating group, the reaction proceeded smoothly to afford the desired products in high yields. Besides, several heterocyclic hydrazones including pyridinyl, pyrazolyl and furyl were also applicable under this
  • conditions. It is of importance, that the trifluoromethylated hydrazones were formed exclusively as the Z isomers. The proposed mechanism [53] is shown in Scheme 33. Activation of Togni’s reagent by CuI through single-electron transfer (SET) initiates the reaction pathway to generate the CF3 radical donor
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Published 17 Jan 2018

Is the tungsten(IV) complex (NEt4)2[WO(mnt)2] a functional analogue of acetylene hydratase?

  • Matthias Schreyer and
  • Lukas Hintermann

Beilstein J. Org. Chem. 2017, 13, 2332–2339, doi:10.3762/bjoc.13.230

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  • carbonyl hydrazones were detected in the DNPH absorption solutions or the reaction solutions after treating with acidic DNPH by recording 1H NMR spectra of the precipitates or filtrates after evaporation to dryness. Only unchanged DNPH was detected. Since the catalysis had given a negative result, we felt
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Published 02 Nov 2017

Regiodivergent condensation of 5-alkoxycarbonyl-1H-pyrrol-2,3-diones with cyclic ketazinones en route to spirocyclic scaffolds

  • Alexey Yu. Dubovtsev,
  • Maksim V. Dmitriev,
  • Аndrey N. Maslivets and
  • Michael Rubin

Beilstein J. Org. Chem. 2017, 13, 2179–2185, doi:10.3762/bjoc.13.218

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  • spirocyclization via conversion of 1,3-diones 8 into mono-hydrazones. Indeed, while mono-imines of these ketones strongly prefer keto-enamine tautomeric form 13 over enol-imine form 14 (Scheme 4) [44][45], the corresponding hydrazones have been reported to favor enol-hydrazone tautomer 16 (Scheme 4) [46][47][48
  • -catalyzed spirocyclization of enoles (vinylogous carbonates and carbamates) with 5-methoxycarbonyl-1H-pyrrolediones. Acid-catalyzed spirocyclization of enoles (vinylogous carboxylates) with 5-alkoxycarbonyl-1H-pyrrolediones. Formation of mono-imines and mono-hydrazones of 1,3-cyclohexanediones and
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Published 19 Oct 2017

Mechanochemical N-alkylation of imides

  • Anamarija Briš,
  • Mateja Đud and
  • Davor Margetić

Beilstein J. Org. Chem. 2017, 13, 1745–1752, doi:10.3762/bjoc.13.169

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  • of imides with alkyl halogenides, and the results are presented in this paper. Until now, ball milling N-alkylations of ureas [15], hydrazones [16], imines [17][18], pyridines [19], pyrimidines [20], imidazoles [21], secondary amines [22], as well as allylic alkylation reactions [23] were reported in
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Published 22 Aug 2017

Contribution of microreactor technology and flow chemistry to the development of green and sustainable synthesis

  • Flavio Fanelli,
  • Giovanna Parisi,
  • Leonardo Degennaro and
  • Renzo Luisi

Beilstein J. Org. Chem. 2017, 13, 520–542, doi:10.3762/bjoc.13.51

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  • in Scheme 16, diazo species 18 could be generated from simple carbonyls 15 and hydrazine (16). Intermediate hydrazones 17 can be converted into the corresponding diazo compounds by oxidation using a recyclable oxidant based on N-iodo-p-toluenesulfonamide potassium salt. The possibility to regenerate
  • a functionalized resin by simple washing with aqueous KI3/KOH solution makes the process more sustainable. This method produces KI solution as waste, and it is an alternative way for the direct oxidation of hydrazones, that often requires the use of heavy metals such as HgO, Pb(OAc)4 and AgO [82][83
  • reactants such as amines, alcohols or aldehydes led to a wide range of products as reported in Scheme 17. Ley's group developed several continuous-flow approaches for generating diazo species from hydrazones [84][85]. Under flow conditions, diazo compounds were reacted with boronic acids in order to
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Published 14 Mar 2017

Construction of bis-, tris- and tetrahydrazones by addition of azoalkenes to amines and ammonia

  • Artem N. Semakin,
  • Aleksandr O. Kokuev,
  • Yulia V. Nelyubina,
  • Alexey Yu. Sukhorukov,
  • Petr A. Zhmurov,
  • Sema L. Ioffe and
  • Vladimir A. Tartakovsky

Beilstein J. Org. Chem. 2016, 12, 2471–2477, doi:10.3762/bjoc.12.241

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  • -tetraazaadamantane derivative was demonstrated. Keywords: azoalkenes; α-halogen hydrazones; heterocage compounds; hydrazone ligands; Michael addition; Introduction Hydrazones are extensively used as key structural units in the design of various functional molecular and supramolecular architectures [1][2][3][4][5
  • would open an easy access to various polyhydrazones of type I. Therefore, a comprehensive study on the interaction of various amines with α-halogen-substituted hydrazones 1 with amines and ammonia was undertaken. Results and Discussion Synthesis of α-halogen-substituted hydrazones 1 Initially, α-halogen
  • -substituted hydrazones 1 were prepared from the corresponding carbonyl compounds and acylhydrazines or carbazates to study the reaction with amines (Scheme 2, for details see Supporting Information File 1). Acetic acid was added as catalyst and for suppression of the side reaction of the formed α-halogen
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Published 21 Nov 2016

Catalytic asymmetric synthesis of biologically important 3-hydroxyoxindoles: an update

  • Bin Yu,
  • Hui Xing,
  • De-Quan Yu and
  • Hong-Min Liu

Beilstein J. Org. Chem. 2016, 12, 1000–1039, doi:10.3762/bjoc.12.98

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Published 18 May 2016

The synthesis of functionalized bridged polycycles via C–H bond insertion

  • Jiun-Le Shih,
  • Po-An Chen and
  • Jeremy A. May

Beilstein J. Org. Chem. 2016, 12, 985–999, doi:10.3762/bjoc.12.97

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  • major product, with the minor product coming from the predicted second-most preferred conformation 84. The May group also showed that the cascade reaction could be initiated from hydrazones. In the course of this work, it was discovered that NaOSiMe3 was a superior base for hydrazone to diazo conversion
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Published 17 May 2016
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