Search results

Search for "sulfonamide" in Full Text gives 107 result(s) in Beilstein Journal of Organic Chemistry.

Molecular recognition of organic ammonium ions in solution using synthetic receptors

  • Andreas Späth and
  • Burkhard König

Beilstein J. Org. Chem. 2010, 6, No. 32, doi:10.3762/bjoc.6.32

Graphical Abstract
PDF
Album
Review
Published 06 Apr 2010

Diastereoselective functionalisation of benzo-annulated bicyclic sultams: Application for the synthesis of cis-2,4-diarylpyrrolidines

  • Susan Kelleher,
  • Pierre-Yves Quesne and
  • Paul Evans

Beilstein J. Org. Chem. 2009, 5, No. 69, doi:10.3762/bjoc.5.69

Graphical Abstract
  • Scheme 1, a Heck (Heck–Mizoroki) cyclisation [5][6][7][8][9] was employed to form the cyclic sulfonamide. Subsequently, it was shown that high stereofacial bias was achieved on hydrogenation, generating 2 as a single diastereoisomer. Treatment under dissolved metal reduction conditions afforded the cis
  • demonstrates that we were able to utilise the functionalisation of bicyclic sulfonamide 5a featuring a Suzuki coupling and a diastereoselective hydrogenation to construct cis-2,4-diarylpyrrolidines in a diastereoselective manner. The epimerisation reaction which led to the formation of carboxylic acid 26
  • . Possible explanation for the products formed in the dibromination of 5a and 5b. Lithiation–CO2 quench approach for the synthesis of 26 from vinyl bromide 24a. Suzuki–Miyaura cross-coupling of 24a and the diastereoselective hydrogenation of the resultant styrene adducts. Attempted sulfonamide double
PDF
Album
Supp Info
Full Research Paper
Published 25 Nov 2009

A convenient method for preparing rigid-core ionic liquid crystals

  • Julien Fouchet,
  • Laurent Douce,
  • Benoît Heinrich,
  • Richard Welter and
  • Alain Louati

Beilstein J. Org. Chem. 2009, 5, No. 51, doi:10.3762/bjoc.5.51

Graphical Abstract
  • −). UV–vis (CH2Cl2): λmax (ε, L·mol−1·cm−1) = 256 nm (10100). Elemental analysis for C22H35F3N2O4S, Cacld: C 56.08, H 7.16, N 6.59%. Found: C 55.84, H 6.86, N 5.40%. 1-[4-(Dodecyloxy)phenyl]-3-methyl-1H-imidazol-3-ium bis(trifluoromethane) sulfonamide (1e) 1a (0.101 g, 0.21 mmol) and lithium bis
  • (trifluoromethane)sulfonamide (0.145 g, 0.51 mmol) were dissolved in water (3 mL) and stirred for 140 h. The precipitate was filtred and washed. Crystallization (chloroform/cyclohexane) provided 1e with a yield of 90% (0.121 g, 0.19 mmol). 1H NMR (300 MHz, CDCl3): δ = 0.89 (t, 3H, J = 6.8 Hz, CH3 aliphatic chain
PDF
Album
Full Research Paper
Published 07 Oct 2009

Mitomycins syntheses: a recent update

  • Jean-Christophe Andrez

Beilstein J. Org. Chem. 2009, 5, No. 33, doi:10.3762/bjoc.5.33

Graphical Abstract
PDF
Album
Review
Published 08 Jul 2009

Reduction of arenediazonium salts by tetrakis(dimethylamino)ethylene (TDAE): Efficient formation of products derived from aryl radicals

  • Mohan Mahesh,
  • John A. Murphy,
  • Franck LeStrat and
  • Hans Peter Wessel

Beilstein J. Org. Chem. 2009, 5, No. 1, doi:10.3762/bjoc.5.1

Graphical Abstract
  • equivalent of TDAE in acetone as solvent. The reaction mixture instantaneously turned deep red, with accompanying effervescence of nitrogen, and afforded the tetracyclic sulfonamide 65 in 60% yield along with indole (63) and indole sulfonamide 64 in 33% and 5% yield respectively (Scheme 8). Initial SET from
  • , would result in the formation of the tetracyclic sulfonamide 65 (Scheme 9). Indole (63) and indole sulfonamide 64 can be formed via the indolinyl radical intermediate 71 (Scheme 10). The formation of the indolinyl radical 71 could be envisaged by abstraction of the hydrogen atom (1,5-hydrogen
  • precedent for this radical fragmentation of the sulfonyl group comes from the previous work of our group [71], where a similar indolinyl radical underwent a radical cleavage of N-S bond to eliminate the sulfonyl group. Indole sulfonamide 64 could be explained by deprotonation of radical 71 by TDAE to form
PDF
Album
Supp Info
Full Research Paper
Published 12 Jan 2009

N-Arylation of amines, amides, imides and sulfonamides with arylboroxines catalyzed by simple copper salt/EtOH system

  • Zhang-Guo Zheng,
  • Jun Wen,
  • Na Wang,
  • Bo Wu and
  • Xiao-Qi Yu

Beilstein J. Org. Chem. 2008, 4, No. 40, doi:10.3762/bjoc.4.40

Graphical Abstract
  • reaction. In an endeavor to expand the scope of the above methodology, the catalytic system was also applied to imides, amines, amides and sulfonamides. Such coupling was found to give the desired N-arylation products in moderate yields, as shown in Table 5, except for sulfonamide, which afforded the
  • , amides, imides, and sulfonamide with phenylboroxine using copper salt/EtOH systema. Supporting Information Supporting Information File 112: N-Arylation of amines, amides, imides and sulfonamides with arylboroxine catalyzed by simple copper salt/EtOH system Acknowledgements This work was financially
PDF
Album
Supp Info
Preliminary Communication
Published 07 Nov 2008
Graphical Abstract
  • diastereoselective functionalisation of piperidines were developed using a racemic model ring system. Oxidative ring expansion[38] of the 2-furyl sulfonamide 11, prepared by addition of n-butyl lithium to the N-tosyl imine of 2-furaldehyde,[39] was followed by protection to yield the piperidin-3-one 12 (Scheme 3
  • materials were prepared from the 1,3-amino alcohol derivatives 1,3syn- and 1,3anti-10 (Scheme 6). Treatment of the difuryl 1,3-sulfinimido alcohols 1,3syn- and 1,3anti-10 with NBS in buffered THF-water precipitiated sulfonamide oxidation and two-directional ring expansion of both furan rings;[50] the crude
  • structural complexity had been introduced as a consequence of the two-directional nature of the approach (sulfonamide oxidation, two oxidative ring expansions, two protection reactions and one N,O acetal substitution reaction). The stage was set for two-directional functionalisation of the heterocyclic rings
PDF
Album
Supp Info
Full Research Paper
Published 26 Aug 2005
Other Beilstein-Institut Open Science Activities