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Search for "radical cation" in Full Text gives 159 result(s) in Beilstein Journal of Organic Chemistry.

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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  • insertions. Attempted generation of 5 and d-5 as well as their corresponding insertion products. Proposed mechanism for the generation of 8 and 9. The [1,2]H-tunneling process apparently cannot compete with C–H-insertion (τ1/2: half-life). Decay of the 2,3-dihydrobenzofuran-3-ol molecular radical cation (8
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Published 11 Nov 2010

Redox-active tetrathiafulvalene and dithiolene compounds derived from allylic 1,4-diol rearrangement products of disubstituted 1,3-dithiole derivatives

  • Filipe Vilela,
  • Peter J. Skabara,
  • Christopher R. Mason,
  • Thomas D. J. Westgate,
  • Asun Luquin,
  • Simon J. Coles and
  • Michael B. Hursthouse

Beilstein J. Org. Chem. 2010, 6, 1002–1014, doi:10.3762/bjoc.6.113

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  • the thione causes the oxidation to occur at a higher potential in 3 than in 27. In TTF derivative 25 the two characteristic reversible single electron redox waves, arising from the step-wise formation of the TTF radical cation and dication, are seen at +260 mV and +720 mV, respectively. The formation
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Published 21 Oct 2010

Aromatic and heterocyclic perfluoroalkyl sulfides. Methods of preparation

  • Vladimir N. Boiko

Beilstein J. Org. Chem. 2010, 6, 880–921, doi:10.3762/bjoc.6.88

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  • [35]. Another method of catalytic generation of RF• radicals involves electron-transfer from a nucleophile to a perfluoroalkyl halide, in this case using the dimethyl dipyridinium salt (methylviologen, MV2+) as a catalyst. This dication is initially reduced to a radical cation, which then transfers an
  • the rate determining step of the process [189] (Scheme 49). This dual influence of sulfur dioxide contributes to the overall efficiency of these reactions. By comparing the possibility of two mediators (SO2 and MV), Koshechko et al., [202] have shown that the radical cation MV+• (Ep = −0.4 V) easily
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Published 18 Aug 2010

EPR and pulsed ENDOR study of intermediates from reactions of aromatic azides with group 13 metal trichlorides

  • Giorgio Bencivenni,
  • Riccardo Cesari,
  • Daniele Nanni,
  • Hassane El Mkami and
  • John C. Walton

Beilstein J. Org. Chem. 2010, 6, 713–725, doi:10.3762/bjoc.6.84

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  • )-cyclohexa-2,5-dienone) and much dark-coloured polymer [31]. The EPR spectrum showed the radical cation of Variamine blue (11b+•) plus broad signals which we attributed to oligomer and/or polymer radical cations (Scheme 2). When anhydrous AlCl3 in DCM – instead of the gallium halide – was added to a solution
  • Azides 1, 6 and 7 were chosen to vary the electronic properties and leaving group abilities of 4-substituents. We showed previously that treatment of phenyl azide 1 with GaCl3 gave well-resolved spectra of 4-aminodiphenylamine radical cation (11a+•, the dimer) and of the trimer under different reaction
  • those of 11a+• (Table 1, entry for 1 with GaCl3) except that the smaller hfs were not resolved. Minor differences in the magnitudes of the hfs can be attributed to the different counter ions. The trimer radical cation was not observed, but clearly a contribution from this species could be hidden under
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Published 09 Aug 2010

Structure and reactivity in neutral organic electron donors derived from 4-dimethylaminopyridine

  • Jean Garnier,
  • Alan R. Kennedy,
  • Leonard E. A. Berlouis,
  • Andrew T. Turner and
  • John A. Murphy

Beilstein J. Org. Chem. 2010, 6, No. 73, doi:10.3762/bjoc.6.73

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  • at the 4 and 4′ positions led to only slight changes in the redox potentials. Keywords: dication; 4-DMAP; electron donor; electron transfer; radical cation; redox; reduction; Introduction Neutral organic compounds 1 and 4–10 (Figure 1) have attracted considerable attention as ground-state electron
  • ][7][8][9][10][11][12], but is not strong enough to react with alkyl and aryl halides. The driving force for its oxidation is the attainment of some degree of aromaticity in the formation of its radical cation salt 2 on the loss of one electron, and full aromaticity in its dication salt 3 on loss of
  • of the second electron, for the conversion of the radical cation to the dication, should be diminished. To see if the same twist occurs with our donor 8, the crystal structure of the disalt 17 was determined [twist (N–C–C–N = 52.5(3) degrees] (Figure 2). The degree of twist is limited by the three
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Published 05 Jul 2010

Synthesis and redox behavior of new ferrocene- π-extended- dithiafulvalenes: An approach for anticipated organic conductors

  • Abdelwareth A. O. Sarhan,
  • Omar F. Mohammed and
  • Taeko Izumi

Beilstein J. Org. Chem. 2009, 5, No. 6, doi:10.3762/bjoc.5.6

Graphical Abstract
  • of the TTF unit into its radical cation and dication. After organic chemists had discovered organic metal tetrathiafulvalene-tetracyanoquinodimethane (TTF-TCNQ) charge transfer complexes, various synthetic approaches to tetrathiafulvalenes gained wide attention, and charge-transfer from TTF to TCNQ
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Published 19 Feb 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
  • formation of aryl radicals had never been reported using TDAE meant that we were keen to compare its reactions with those of the structurally related TTF (4a). Thus, as shown in Scheme 2, the radical-cation of TTF intercepts intermediates with the formation of C-S bonds in the radical-polar crossover
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Published 12 Jan 2009

Sordarin, an antifungal agent with a unique mode of action

  • Huan Liang

Beilstein J. Org. Chem. 2008, 4, No. 31, doi:10.3762/bjoc.4.31

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  • believed to involve single-electron oxidation of the cyclopropanol, fragmentation of a transient radical cation, and diastereoselective radical cyclization. In the enantioselective synthesis, this transformation was more efficiently achieved by treatment of enantioenriched 41b with the AgNO3-ammonium
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Published 05 Sep 2008

Generation of pyridyl coordinated organosilicon cation pool by oxidative Si-Si bond dissociation

  • Toshiki Nokami,
  • Ryoji Soma,
  • Yoshimasa Yamamoto,
  • Toshiyuki Kamei,
  • Kenichiro Itami and
  • Jun-ichi Yoshida

Beilstein J. Org. Chem. 2007, 3, No. 7, doi:10.1186/1860-5397-3-7

Graphical Abstract
  • ]. The coordination also stabilizes the thus-generated radical cation and weakens the C-Sn bond. A similar effect of intramolecular coordination was observed in the case of silicon [23]. Another important point is that pyridyl group is rather inactive toward the anodic oxidation. Thus, we chose to use a
  • neutral molecules (Supporting Information File 1). Therefore, the significant effect of the 2-pyridyl group on the oxidation potential may be ascribed to effective intramolecular coordination to stabilize the radical cation intermediate. The conformationally less flexible 2-pyridylphenyl group seems to be
  • more effective than the 2-pyridylethyl group. The intramolecular coordination in the radical cation is supported by the DFT calculations as shown in Figure 2. It is also important to note that such coordination elongates the Si-Si bond and facilitates its dissociation. Preparative electrochemical
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Preliminary Communication
Published 08 Feb 2007
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