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Search for "Raney nickel" in Full Text gives 48 result(s) in Beilstein Journal of Organic Chemistry.

A novel recyclable organocatalyst for the gram-scale enantioselective synthesis of (S)-baclofen

  • Gyula Dargó,
  • Dóra Erdélyi,
  • Balázs Molnár,
  • Péter Kisszékelyi,
  • Zsófia Garádi and
  • József Kupai

Beilstein J. Org. Chem. 2023, 19, 1811–1824, doi:10.3762/bjoc.19.133

Graphical Abstract
  • be synthesized in two steps. The nitro acid (S)-18 was obtained using HCl in THF in good yield (70%), which could be reduced to (S)-baclofen hydrochloride using Raney nickel as catalyst (Scheme 4) [38]. Conclusion In conclusion, we have prepared a new lipophilic cinchona squaramide organocatalyst 2
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Published 24 Nov 2023

Synthesis of ether lipids: natural compounds and analogues

  • Marco Antônio G. B. Gomes,
  • Alicia Bauduin,
  • Chloé Le Roux,
  • Romain Fouinneteau,
  • Wilfried Berthe,
  • Mathieu Berchel,
  • Hélène Couthon and
  • Paul-Alain Jaffrès

Beilstein J. Org. Chem. 2023, 19, 1299–1369, doi:10.3762/bjoc.19.96

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Published 08 Sep 2023

1,4-Dithianes: attractive C2-building blocks for the synthesis of complex molecular architectures

  • Bram Ryckaert,
  • Ellen Demeyere,
  • Frederick Degroote,
  • Hilde Janssens and
  • Johan M. Winne

Beilstein J. Org. Chem. 2023, 19, 115–132, doi:10.3762/bjoc.19.12

Graphical Abstract
  • chemoselective and stereospecific mild hydrodesulfurization with Raney nickel in acetic acid affords the target compound 59 as a single Z-diastereomer. Interestingly, glacial acetic acid proved to be the only solvent that could avoid both undesired overreduction and cis–trans isomerization of the alkene bond. It
  • . This was required to avoid undesired hydrogenation of both the vinyl and the cyclopropane moieties, which both proved sensitive to the action of Raney nickel. A particularly troublesome episode that demonstrates the problems one can encounter in dithiane desulfurizations, was encountered in our labs
  • controlled alternative for the often troublesome, but nevertheless highly chemoselective hydrodesulfurization with Raney nickel would be a highly valuable addition to the organic synthesis tool box. Few good or general alternatives for this method seem to exist [114], and for very sensitive substrates
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Published 02 Feb 2023

A new route for the synthesis of 1-deazaguanine and 1-deazahypoxanthine

  • Raphael Bereiter,
  • Marco Oberlechner and
  • Ronald Micura

Beilstein J. Org. Chem. 2022, 18, 1617–1624, doi:10.3762/bjoc.18.172

Graphical Abstract
  • differed from the above path by leaving the hydroxy group of all intermediate 4-hydroxypyridine derivatives 12–15 unprotected [19]. Moreover, instead of azo coupling or nitroso formation, a simple nitration protocol with nitric acid to give the nitro derivative 13 and subsequent reduction with Raney nickel
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Published 29 Nov 2022

Synthesis of odorants in flow and their applications in perfumery

  • Merlin Kleoff,
  • Paul Kiler and
  • Philipp Heretsch

Beilstein J. Org. Chem. 2022, 18, 754–768, doi:10.3762/bjoc.18.76

Graphical Abstract
  • of up to 0.35 kg/h for enone 4. In the second step, the obtained 4-aryl-3-buten-2-ones 3 and 4 are selectively hydrogenated in flow using a packed-bed reactor with Raney nickel as catalyst affording raspberry ketone (5) in 91% yield and raspberry ketone methyl ether (6) in 94% yield, respectively
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Published 27 Jun 2022

Substituent effect on TADF properties of 2-modified 4,6-bis(3,6-di-tert-butyl-9-carbazolyl)-5-methylpyrimidines

  • Irina Fiodorova,
  • Tomas Serevičius,
  • Rokas Skaisgiris,
  • Saulius Juršėnas and
  • Sigitas Tumkevicius

Beilstein J. Org. Chem. 2022, 18, 497–507, doi:10.3762/bjoc.18.52

Graphical Abstract
  • energies [53], however, it should be sufficient for brief analysis. Procedures and product characterization 4,6-Bis[3,6-di(tert-butyl)-9H-carbazol-9-yl]-5-methylpyrimidine (1). Compound 1 was synthesized in a manner similar to [30]. A mixture of compound tCbz-mPYR (90 mg, 0.13 mmol, 1 equiv), Raney nickel
  • (270 mg, 3 equiv by mass), prepared before reaction according to [54], and methanol (3 mL) were placed in a screw-cap vial equipped with a magnetic stirring bar. The reaction mixture was heated at 90 °C under stirring for 2 h. Then, Raney nickel was filtered off and washed with hot chloroform. The
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Published 05 May 2022

Synthesis of O6-alkylated preQ1 derivatives

  • Laurin Flemmich,
  • Sarah Moreno and
  • Ronald Micura

Beilstein J. Org. Chem. 2021, 17, 2295–2301, doi:10.3762/bjoc.17.147

Graphical Abstract
  • potassium sodium tartrate solution (Rochelle salt) to furnish the aldehyde 5. Then, transformation of the 7-formyl into the 7-aminomethyl group proceeded via oxime formation, applying hydroxylamine hydrochloride in methanolic ammonia, followed by reduction with Raney nickel to yield the tritylated precursor
  • ) hydroxylamine hydrochloride (21 mg, 0.300 mmol) was added. A clear solution was obtained shortly thereafter. The reaction was stirred for two hours at room temperature. Tetrahydrofuran (4 mL) and damp Raney-Nickel (approximately 200 mg) were introduced and the reaction was continued for one hour. The reaction
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Published 02 Sep 2021

A recent overview on the synthesis of 1,4,5-trisubstituted 1,2,3-triazoles

  • Pezhman Shiri,
  • Ali Mohammad Amani and
  • Thomas Mayer-Gall

Beilstein J. Org. Chem. 2021, 17, 1600–1628, doi:10.3762/bjoc.17.114

Graphical Abstract
  • obtained triazoles 178 were then transformed into the corresponding 5-aminotriazoles 179 by reduction with Raney nickel in MeOH at 60 °C. In addition, the further transformation of 5-aminotriazoles 179 into more complex derivatives, such as 180–183, was explored [68]. The Huisgen reaction of structurally
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Published 13 Jul 2021

One-step synthesis of imidazoles from Asmic (anisylsulfanylmethyl isocyanide)

  • Louis G. Mueller,
  • Allen Chao,
  • Embarek AlWedi and
  • Fraser F. Fleming

Beilstein J. Org. Chem. 2021, 17, 1499–1502, doi:10.3762/bjoc.17.106

Graphical Abstract
  • electrophiles to afford imidazoles. In situ cyclization to the imidazole is promoted by the conjugate acid, hexamethyldisilazane, which facilitates the requisite series of proton transfers. The rapid formation of imidazoles and the interchange of the anisylsulfanyl for hydrogen with Raney nickel make the method
  • to substituted imidazoles. Raney nickel hydrogenolysis was effective in interchanging the C4 anisylsulfanyl group for hydrogen (Scheme 3); attempted lithium–anisylsulfanyl exchange [19] or palladium- [22] or nickel- [23] anisylsulfanyl cross coupling was not successful. Raney nickel reduction of 7f
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Published 24 Jun 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

N-tert-Butanesulfinyl imines in the asymmetric synthesis of nitrogen-containing heterocycles

  • Joseane A. Mendes,
  • Paulo R. R. Costa,
  • Miguel Yus,
  • Francisco Foubelo and
  • Camilla D. Buarque

Beilstein J. Org. Chem. 2021, 17, 1096–1140, doi:10.3762/bjoc.17.86

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Published 12 May 2021

The preparation and properties of 1,1-difluorocyclopropane derivatives

  • Kymbat S. Adekenova,
  • Peter B. Wyatt and
  • Sergazy M. Adekenov

Beilstein J. Org. Chem. 2021, 17, 245–272, doi:10.3762/bjoc.17.25

Graphical Abstract
  • cleavage by the use of either palladium(II) oxide or Raney nickel as the catalyst (Scheme 66) [116]. Butylbenzene (152) and 2-fluoro-1-phenylbutane (153) were the main products, although the unsaturated intermediates 154 and 155 were also detected. The contribution of the fluorine substituents to the
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Published 26 Jan 2021

Recent progress in the synthesis of homotropane alkaloids adaline, euphococcinine and N-methyleuphococcinine

  • Dimas J. P. Lima,
  • Antonio E. G. Santana,
  • Michael A. Birkett and
  • Ricardo S. Porto

Beilstein J. Org. Chem. 2021, 17, 28–41, doi:10.3762/bjoc.17.4

Graphical Abstract
  • azatricyclo[3.3.1.1]decane (+)-23a in 54% yield. Treatment of (+)-23a with Raney nickel resulted in the cleavage of the sulfinyl group and the N–O bond, providing the bicyclic alcohol 24, which was oxidized with PCC to give (+)-euphococcinine (2). The same protocol was applied to (+)-21b, furnishing the
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Published 05 Jan 2021

All-carbon [3 + 2] cycloaddition in natural product synthesis

  • Zhuo Wang and
  • Junyang Liu

Beilstein J. Org. Chem. 2020, 16, 3015–3031, doi:10.3762/bjoc.16.251

Graphical Abstract
  • hydrodesulfurization with Raney nickel as catalyst and subsequent catalytic hydrogenation produced (±)-cuparene (13) in 90% yield. All-carbon [3 + 2] annulation in natural product synthesis The all-carbon [3 + 2] cycloaddition demonstrated the ability to assemble intricate polycyclic structures in the synthesis of
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Published 09 Dec 2020

Easy access to a carbohydrate-based template for stimuli-responsive surfactants

  • Thomas Holmstrøm,
  • Daniel Raydan and
  • Christian Marcus Pedersen

Beilstein J. Org. Chem. 2020, 16, 2788–2794, doi:10.3762/bjoc.16.229

Graphical Abstract
  • glucosides with O-methyl groups (6), O-n-propyl groups (7) or O-n-dodecyl groups (8) were synthesized demonstrating that the building block could easily be functionalized with lipophilic tails of different lengths. The azido groups of the three compounds could undergo a reduction by using Raney nickel in
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Published 17 Nov 2020

Convenient access to pyrrolidin-3-ylphosphonic acids and tetrahydro-2H-pyran-3-ylphosphonates with multiple contiguous stereocenters from nonracemic adducts of a Ni(II)-catalyzed Michael reaction

  • Alexander N. Reznikov,
  • Dmitry S. Nikerov,
  • Anastasiya E. Sibiryakova,
  • Victor B. Rybakov,
  • Evgeniy V. Golovin and
  • Yuri N. Klimochkin

Beilstein J. Org. Chem. 2020, 16, 2073–2079, doi:10.3762/bjoc.16.174

Graphical Abstract
  • . Hydrogenation in the presence of Raney nickel or Pd/C in various solvents leads to a mixture of products, among which 8 and 9 are identified (Scheme 1). A satisfactory yield of the desired product 7 (78% by 31P NMR of reaction mixture) was achieved when the hydrogenation was carried out in acetic acid in the
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Published 25 Aug 2020

Rearrangement of o-(pivaloylaminomethyl)benzaldehydes: an experimental and computational study

  • Csilla Hargitai,
  • Györgyi Koványi-Lax,
  • Tamás Nagy,
  • Péter Ábrányi-Balogh,
  • András Dancsó,
  • Gábor Tóth,
  • Judit Halász,
  • Angéla Pandur,
  • Gyula Simig and
  • Balázs Volk

Beilstein J. Org. Chem. 2020, 16, 1636–1648, doi:10.3762/bjoc.16.136

Graphical Abstract
  • Raney nickel (Ra-Ni), sometimes as the main product, depending on the activity of the catalyst [10] (Scheme 2). The oxidative dimerization of 1-phenylisoindole (6a) to compound 5a took place under various conditions: when refluxing in benzene in the presence of air [5][11], during an attempted
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Published 13 Jul 2020

A review of asymmetric synthetic organic electrochemistry and electrocatalysis: concepts, applications, recent developments and future directions

  • Munmun Ghosh,
  • Valmik S. Shinde and
  • Magnus Rueping

Beilstein J. Org. Chem. 2019, 15, 2710–2746, doi:10.3762/bjoc.15.264

Graphical Abstract
  • corresponding alcohol 2 with 14.7% optical yield [21]. Control experiments confirmed that the modified electrodes served as chiral inductors (Scheme 1). In 1982, Fujihira and Osa reported the modification of Raney nickel powder electrodes with optically active tartaric acid and used these electrodes for the
  • asymmetric hydrogenation of ketones [22]. They showed that upon reduction with Raney nickel powder electrodes modified with (R,R)-(+)-tartaric acid, 2-hexanone 3 was converted to (S)-(+)-2-hexanol 4 with an average optical purity of 4%, whereas Raney nickel powder electrodes modified with (S,S)-(−)-tartaric
  • modified graphite cathode. Asymmetric hydrogenation of ketones using Raney nickel powder electrodes modified with optically active tartaric acid. Asymmetric reduction of prochiral activated olefins with a poly-ʟ-valine-coated graphite cathode. Asymmetric reduction of prochiral carbonyl compounds, oximes
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Published 13 Nov 2019

Synthesis of new p-tert-butylcalix[4]arene-based polyammonium triazolyl amphiphiles and their binding with nucleoside phosphates

  • Vladimir A. Burilov,
  • Guzaliya A. Fatikhova,
  • Mariya N. Dokuchaeva,
  • Ramil I. Nugmanov,
  • Diana A. Mironova,
  • Pavel V. Dorovatovskii,
  • Victor N. Khrustalev,
  • Svetlana E. Solovieva and
  • Igor S. Antipin

Beilstein J. Org. Chem. 2018, 14, 1980–1993, doi:10.3762/bjoc.14.173

Graphical Abstract
  • instead of pyrophoric Raney nickel. Finally, a diazotization procedure with subsequent azide substitution [37][38] gave calix[4]arene azide derivatives 4 and 8. For the latter reaction a mixture of DMF/glacial acetic acid 3:1 was found to be the optimal solvent. The structures of macrocycles 4 and 8 were
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Published 31 Jul 2018

High-yielding continuous-flow synthesis of antimalarial drug hydroxychloroquine

  • Eric Yu,
  • Hari P. R. Mangunuru,
  • Nakul S. Telang,
  • Caleb J. Kong,
  • Jenson Verghese,
  • Stanley E. Gilliland III,
  • Saeed Ahmad,
  • Raymond N. Dominey and
  • B. Frank Gupton

Beilstein J. Org. Chem. 2018, 14, 583–592, doi:10.3762/bjoc.14.45

Graphical Abstract
  • prepare compound 6. It is well known that the direct one-step reductive amination of 6 to give 12 can be accomplished by simple heterogeneous reduction with H2/Raney-nickel [24]. However, THF is employed in all of our prior flow steps and is a poor choice as a solvent for the reductive amination step due
  • to limited solubility of ammonia in THF. H2/Raney-nickel reductions are often carried out in alcoholic media where much higher concentrations of ammonia are achievable but would require a solvent exchange. There are many reports of continuous-flow chemistry methods for reductive amination of ketones
  • heterogeneous reduction with H2/Raney-nickel. Therefore, we explored an alternate strategy: simple conversion of the ketone group of 6 to oxime 11, followed by reduction to give 5-(ethyl(2-hydroxyethyl)amino)-2-aminopentane (12). We have found H2/Raney-nickel efficiently reduces 11 to 12 with THF as the solvent
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Published 08 Mar 2018

An alternative to hydrogenation processes. Electrocatalytic hydrogenation of benzophenone

  • Cristina Mozo Mulero,
  • Alfonso Sáez,
  • Jesús Iniesta and
  • Vicente Montiel

Beilstein J. Org. Chem. 2018, 14, 537–546, doi:10.3762/bjoc.14.40

Graphical Abstract
  • important to note that, formation of “active hydrogen” is the main step in this process and hydrogen-active powder electrocatalysts such as Pd/C, Pt/C or Raney-nickel have been demonstrated as the optimal choice [16][17]. Moreover, the organic molecule adsorption rate must be faster than that one associated
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Published 01 Mar 2018

Latest development in the synthesis of ursodeoxycholic acid (UDCA): a critical review

  • Fabio Tonin and
  • Isabel W. C. E. Arends

Beilstein J. Org. Chem. 2018, 14, 470–483, doi:10.3762/bjoc.14.33

Graphical Abstract
  • mechanism for this step is analogous to the mechanism for ketal or acetal formation except sulphur replaces oxygen as the nucleophile attacking the carbonyl group. In a second step, the dithioketal is reduced to the corresponding methylene compound by hydrogenolysis in presence of Raney Nickel (actually
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Published 20 Feb 2018

Solvent-free sonochemistry: Sonochemical organic synthesis in the absence of a liquid medium

  • Deborah E. Crawford

Beilstein J. Org. Chem. 2017, 13, 1850–1856, doi:10.3762/bjoc.13.179

Graphical Abstract
  • ]. Metal catalysts are prepared by the sonication of metal halides (e.g., Pt and Pd – reduction of metal) in the presence of Li and THF [14][15]. Furthermore, the catalytic behaviour of catalysts such as Raney Nickel, has reportedly been increased solely due to the effect of using ultrasound [16]. Catalyst
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Published 04 Sep 2017

Phosphazene-catalyzed desymmetrization of cyclohexadienones by dithiane addition

  • Matthew A. Horwitz,
  • Elisabetta Massolo and
  • Jeffrey S. Johnson

Beilstein J. Org. Chem. 2017, 13, 762–767, doi:10.3762/bjoc.13.75

Graphical Abstract
  • of the dithiane moiety via Raney nickel-promoted desulfurization (Scheme 5). To observe any substrate conversion, it was necessary to use a hydrogen atmosphere. Under those conditions, though the dithiane function was removed, degradation occurred. Conclusion In conclusion, we have developed a
  • tethered nucleophile. Scope of the transformation. Convex facial additions. Attempted oxidative deacylation. Attempted desulfurization with Raney nickel. Carbonyl deprotection conditions. Supporting Information Supporting Information File 247: Experimental procedures, characterization data and copies of
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Published 24 Apr 2017

The reductive decyanation reaction: an overview and recent developments

  • Jean-Marc R. Mattalia

Beilstein J. Org. Chem. 2017, 13, 267–284, doi:10.3762/bjoc.13.30

Graphical Abstract
  • charge on the carbon adjacent to the cyano group [76][77]. Transition-metal-catalyzed reductive decyanation Hydrogenation of α-aminonitriles The decyanation of α-aminonitriles with hydrogen present in an excess of Raney nickel was described by Husson and co-workers on oxazolidine derivatives [83][84
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Published 13 Feb 2017
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