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Search for "selenium dioxide" in Full Text gives 16 result(s) in Beilstein Journal of Organic Chemistry.

Synthetic applications of the Cannizzaro reaction

  • Bhaskar Chatterjee,
  • Dhananjoy Mondal and
  • Smritilekha Bera

Beilstein J. Org. Chem. 2024, 20, 1376–1395, doi:10.3762/bjoc.20.120

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  • synthesized via the Cannizzaro reaction. Proposed catalytic cycle for the dehydrogenation of alcohols. Intramolecular Cannizzaro reaction of aryl glyoxal hydrates using TOX catalysts. Intramolecular Cannizzaro reaction of aryl methyl ketones using ytterbium triflate/selenium dioxide. Intramolecular Cannizzaro
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Published 19 Jun 2024

Competing electrophilic substitution and oxidative polymerization of arylamines with selenium dioxide

  • Vishnu Selladurai and
  • Selvakumar Karuthapandi

Beilstein J. Org. Chem. 2024, 20, 1221–1235, doi:10.3762/bjoc.20.105

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  • , and methyl anthranilate, with selenium dioxide in acetonitrile. A systematic analysis of the reaction products with the help of 77Se NMR and single-crystal X-ray crystallography revealed that the reaction progress follows three major reaction pathways, electrophilic selenation, oxidative
  • using SeO2 as an electrophile source in aromatic electrophilic substitution reactions. Keywords: arylamines; electrophilic substitution; oxamides: polymerization; selenium dioxide; Introduction Organoselenium compounds have received considerable attention due to interesting medicinal properties, such
  • arylselenium compounds [26][27][28]. Noteworthy examples are the use of SeO2 as selenium source in aromatic electrophilic substitution reactions [27][28][29]. Selenium dioxide is a well-known oxidizing agent for the allylic oxidation and oxidation of α-CH bonds located adjacent to electron-withdrawing groups
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Published 27 May 2024

Construction of hexabenzocoronene-based chiral nanographenes

  • Ranran Li,
  • Di Wang,
  • Shengtao Li and
  • Peng An

Beilstein J. Org. Chem. 2023, 19, 736–751, doi:10.3762/bjoc.19.54

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  • . And the derivative 16 was also synthesized by allylic oxidation of compound 15 using selenium dioxide. As helical chiral NGs, helicene 14 and its derivatives 15 and 16 showed highly distorted helical conformation and also exhibited a relatively high isomerization barrier (over 28.9 kcal/mol determined
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Published 30 May 2023

Catalyzed and uncatalyzed procedures for the syntheses of isomeric covalent multi-indolyl hetero non-metallides: an account

  • Ranadeep Talukdar

Beilstein J. Org. Chem. 2021, 17, 2102–2122, doi:10.3762/bjoc.17.137

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  • obtaining diaryl sulfides [117]. Selenides Along with the oxygen insertion, Black et al. also performed the oxidative selenium insertion into the C-7 position of highly electrophilic 2-methylindole derivative 184. The dual role of selenium dioxide consists of activation of the C-7 position giving the
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Published 19 Aug 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

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  • piperidine (17). The synthetic sequence performed by the authors is described in Scheme 3. Oxidation of 17 in the presence of hydrogen peroxide, catalyzed by selenium dioxide provided tetrahydropyridine N-oxide 18 in 88% yield. 18 was treated with (R)-p-tolylsulfinylmethyllithium 25 in THF at −78 °C to
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Published 05 Jan 2021

Chiral terpene auxiliaries V: Synthesis of new chiral γ-hydroxyphosphine oxides derived from α-pinene

  • Anna Kmieciak and
  • Marek P. Krzemiński

Beilstein J. Org. Chem. 2019, 15, 2493–2499, doi:10.3762/bjoc.15.242

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  • selenium dioxide in methanol [28]. The obtained phenyl selenide 14 was oxidized with hydrogen peroxide in the presence of pyridine to selenoxide, which readily undergoes intramolecular syn-elimination to produce α,β-unsaturated (+)-apoverbenone (15) [28][29]. In the next step, Luche reduction of 15
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Published 22 Oct 2019

Harnessing enzyme plasticity for the synthesis of oxygenated sesquiterpenoids

  • Melodi Demiray,
  • David J. Miller and
  • Rudolf K. Allemann

Beilstein J. Org. Chem. 2019, 15, 2184–2190, doi:10.3762/bjoc.15.215

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  • the same manner, beginning with a tetrahydropyranyl (THP) protection of (E,E)-farnesol to form 13 [29][30]. This was followed by a selenium dioxide oxidation that produced 12-hydroxyfarnesol (14) as the major product (48%, already published in [29]) in addition to 8-hydroxyfarnesol (15, 11%) [31
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Published 17 Sep 2019

The LANCA three-component reaction to highly substituted β-ketoenamides – versatile intermediates for the synthesis of functionalized pyridine, pyrimidine, oxazole and quinoxaline derivatives

  • Tilman Lechel,
  • Roopender Kumar,
  • Mrinal K. Bera,
  • Reinhold Zimmer and
  • Hans-Ulrich Reissig

Beilstein J. Org. Chem. 2019, 15, 655–678, doi:10.3762/bjoc.15.61

Graphical Abstract
  • derivatives PM allows a variety of subsequent transformations to new derivatives. The C-4 methyl (in one case benzyl) group is an inevitable structural feature of these pyrimidines, but it can smoothly be used for oxidation reactions to introduce new functional groups. As typical examples selenium dioxide
  • reasonable overall yields (Scheme 20) [30]. This pathway via the pyrimidine N-oxides represents a good alternative to the direct oxidation of the 4-methyl group by selenium dioxide (see Scheme 11). The subsequent transformation of the aldehyde PM71 to the oxime followed by dehydration afforded nitrile PM72
  • of pyrimidine derivatives PM through selenium dioxide oxidations of PM5, PM9, PM15 and PM19 leading to 4-formyl-substituted pyrimidines PM41, PM42, PM44 and PM48 and selected subsequent transformations (TosMIC = tosylmethyl isocyanide). Conversion of 2-vinyl-substituted pyrimidine PM7 into aldehyde
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Published 13 Mar 2019

One hundred years of benzotropone chemistry

  • Arif Dastan,
  • Haydar Kilic and
  • Nurullah Saracoglu

Beilstein J. Org. Chem. 2018, 14, 1120–1180, doi:10.3762/bjoc.14.98

Graphical Abstract
  • ) 2.1.1. Oxidation of benzo[7]annulenes: 4,5-Benzotropone (11) was synthesized for the first time via oxidation with selenium dioxide of 7H-benzo[7]annulene (14, Scheme 2) [39][40][41][42][43][44][45]. Furthermore, the direct oxidation of 5H-benzo[7]annulene to benzotropones was examined by Srivastava and
  • Dev [37]. The selenium dioxide oxidation of 5H-benzo[7]annulene (15) furnished not only 4,5-benzotropone (11; 27%) but also 2,3-benzotropone (12; 13%, Scheme 2). Pomerantz and Swei [51] investigated the oxidation of benzotropylium cation 16 with several oxidants. The oxidants used and results obtained
  • synthesis of Julia’s ketone was achieved by dehydration of the known keto-alcohol 164 by boric acid. Oxidation of Julia’s ketone with selenium dioxide gave 2,3-benzotropone (12). An alternative synthesis for 12, which represents a feasible route to avoid the disadvantage of selenium dioxide, is also
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Published 23 May 2018

Oxidative dehydrogenation of C–C and C–N bonds: A convenient approach to access diverse (dihydro)heteroaromatic compounds

  • Santanu Hati,
  • Ulrike Holzgrabe and
  • Subhabrata Sen

Beilstein J. Org. Chem. 2017, 13, 1670–1692, doi:10.3762/bjoc.13.162

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  • precursors using metal-based reagents. For example selenium dioxide (SeO2, 10 equiv) has been used in the presence of an acid for oxidative dehydrogenation of tetrahydro-β-carbolines 49 to afford aromatic β-carbolines 50 (Scheme 15) [65]. Bhutania et al. [66] has also reported a similar synthesis of 1-aryl-β
  • MnO2. Selenium dioxide and potassium dichromate-mediated oxidative dehydrogenation of tetrahydro-β-carbolines [65][66]. Synthesis of substituted benzazoles in the presence of barium permanganate. Oxidative dehydrogenation with phenanthroline-based catalysts. PPTS = pyridinium p-toluenesulfonic acid
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Published 15 Aug 2017

The Flögel-three-component reaction with dicarboxylic acids – an approach to bis(β-alkoxy-β-ketoenamides) for the synthesis of complex pyridine and pyrimidine derivatives

  • Mrinal K. Bera,
  • Moisés Domínguez,
  • Paul Hommes and
  • Hans-Ulrich Reissig

Beilstein J. Org. Chem. 2014, 10, 394–404, doi:10.3762/bjoc.10.37

Graphical Abstract
  • compounds. An alternative option for the side chain functionalization of 4- or 6-methyl substituted pyrimidines involves an oxidation with selenium dioxide (Riley oxidation [66][67][68]). To explore the synthetic potential of the newly prepared compounds we exemplarily oxidized bis(pyrimidine) 23a by this
  • method in order to finally prepare a macrocyclic compound such as 34 (Scheme 7). Treatment of 23a with an excess of selenium dioxide at 90 °C resulted in the formation of an inseparable mixture of two different aldehydes (probably the dialdehyde and the monoaldehyde). After reduction of the mixture with
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Published 13 Feb 2014

Novel supramolecular affinity materials based on (−)-isosteviol as molecular templates

  • Christina Lohoelter,
  • Malte Brutschy,
  • Daniel Lubczyk and
  • Siegfried R. Waldvogel

Beilstein J. Org. Chem. 2013, 9, 2821–2833, doi:10.3762/bjoc.9.317

Graphical Abstract
  • , (−)-isosteviol can be oxidized under Riley conditions (Table 1, reaction conditions a: selenium dioxide/xylene) [62][63] to give the corresponding diketone 9 [66]. Subsequent esterification with 3,5-dinitrobenzylic chloride under basic conditions (Table 1, reaction conditions b for R = DNB) [67] proceeds with a
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Published 09 Dec 2013

New syntheses of 5,6- and 7,8-diaminoquinolines

  • Maroš Bella and
  • Viktor Milata

Beilstein J. Org. Chem. 2013, 9, 2669–2674, doi:10.3762/bjoc.9.302

Graphical Abstract
  • treatment of hydrochloride 5 with selenium dioxide in water at room temperature afforded selenadiazoloquinoline 6 in 76% yield (Scheme 2) in comparison with 18% yield obtained by heating of diaminoquinoline 3 with selenium dioxide in dioxane under reflux [9]. To date, pyridoquinoxaline 8 has been prepared
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Published 27 Nov 2013

Synthesis and characterization of Sant-75 derivatives as Hedgehog-pathway inhibitors

  • Chao Che,
  • Song Li,
  • Bo Yang,
  • Shengchang Xin,
  • Zhixiong Yu,
  • Taofeng Shao,
  • Chuanye Tao,
  • Shuo Lin and
  • Zhen Yang

Beilstein J. Org. Chem. 2012, 8, 841–849, doi:10.3762/bjoc.8.94

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  • the presence of catalytic NaOMe, followed by treatment with NH4Cl. Then, condensation of 13 with acetylacetaldehyde dimethyl acetal in 1,4-dioxane afforded 6-methyl-2-(4-pyridinyl)pyrimidine 14 in 62% yield [47]. Consequent allylic oxidation of 14 with selenium dioxide gave 11e in moderate yield
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Published 06 Jun 2012

Synthesis and oxidation of some azole-containing thioethers

  • Andrei S. Potapov,
  • Nina P. Chernova,
  • Vladimir D. Ogorodnikov,
  • Tatiana V. Petrenko and
  • Andrei I. Khlebnikov

Beilstein J. Org. Chem. 2011, 7, 1526–1532, doi:10.3762/bjoc.7.179

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  • . Selenium dioxide-catalyzed oxidation of benzotriazole thioether by H2O2, however, proceeds selectively and yields sulfoxide only. Keywords: azole; oxidation; sulfone; sulfoxide; thioether; Introduction Compounds comprising two pyrazole moieties linked by an aliphatic spacer act as bidentate chelating
  • sulfone can be selectively isolated by varying the oxidation conditions. Sulfone can be prepared by the addition of an excess of H2O2 in acetic acid at elevated temperature, while sulfoxide is selectively formed upon the addition of H2O2 and selenium dioxide in methanol. Experimental General methods
  • . 1,1'-(Sulfinylbis(methylene))bis(benzotriazole) (8). Thioether 5 (0.209 g, 0.706 mmol), selenium dioxide (0.157 g, 1.41 mmol) and hydrogen peroxide (0.1 mL of 50% aqueous solution, 1.41 mmol) in methanol (4 mL) were stirred at 60 °C for 6 h. Subsequently, the reaction mixture was poured into water (20
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Published 16 Nov 2011

Intramolecular hydroxycarbene C–H-insertion: The curious case of (o-methoxyphenyl)hydroxycarbene

  • Dennis Gerbig,
  • David Ley,
  • Hans Peter Reisenauer and
  • Peter R. Schreiner

Beilstein J. Org. Chem. 2010, 6, 1061–1069, doi:10.3762/bjoc.6.121

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  • , was added 3.33 g (30.0 mmol) of selenium dioxide. The mixture was stirred at 80 °C for 4 h. After filtration, concentration of the solution gave a brown oil that was dissolved in 5% sodium hydroxide solution and washed three times with small portions of diethyl ether. The aqueous layer was acidified
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Published 11 Nov 2010
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