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Results: 611
Number of items: 611
  • Open Access
    te Grotenhuis, C. (2018). Taming carbon-centered radicals with cobalt: Controlled formation of carbene-radical intermediates and catalytic reactivity via ortho-quinodimethanes. [Thesis, fully internal, Universiteit van Amsterdam].
  • Open Access
    Karns, A. S., Goswami, M., & de Bruin, B. (2018). Catalytic Synthesis of Indolines by Hydrogen Atom Transfer to Cobalt(III)-Carbene Radicals. Chemistry-A European Journal, 24(20), 5253-5258. https://doi.org/10.1002/chem.201704626
  • Open Access
    Rebreyend, C. (2018). The radical-type chemistry of rhodium and iridium complexes with 'non-innocent' nitrido and PNN pincer ligands. [Thesis, fully internal, Universiteit van Amsterdam].
  • Open Access
    Sinha, V., Pribanic, B., de Bruin, B., Trincado, M., & Grutzmacher, H. (2018). Ligand- and Metal-Based Reactivity of a Neutral Ruthenium Diolefin Diazadiene Complex: The Innocent, the Guilty and the Suspicious. Chemistry-A European Journal, 24(21), 5513-5521. https://doi.org/10.1002/chem.201705957
  • Open Access
    Chirila, A., Brands, M. B., & de Bruin, B. (2018). Mechanistic investigations into the cyclopropanation of electron deficient alkenes with ethyl diazoacetate using [Co(MeTAA)]. Journal of Catalysis, 361, 347-360. https://doi.org/10.1016/j.jcat.2018.02.013
  • Open Access
    Raoufmoghaddam, S., Mannathan, S., Minnaard, A. J., de Vries, J. G., de Bruin, B., & Reek, J. N. H. (2018). Importance of the Reducing Agent in Direct Reductive Heck Reactions. ChemCatChem, 10(1), 266-272. https://doi.org/10.1002/cctc.201701206
  • Open Access
    Goswami, M., Konkel, A., Rahimi, M., Louillat-Habermeyer, M.-L., Kelm, H., Jin, R., de Bruin, B., & Patureau, F. W. (2018). Mechanism of the Dehydrogenative Phenothiazination of Phenols. Chemistry-A European Journal, 24(46), 11936-11943. https://doi.org/10.1002/chem.201800730
  • Open Access
    van de Watering, F. F., Stroek, W., van der Vlugt, J. I., de Bruin, B., Dzik, W. I., & Reek, J. N. H. (2018). Coordination of 3‐Methylindole‐Based Tripodal Tetraphosphine Ligands to Iron(+II), Cobalt(+II), and Nickel(+II) and Investigations of their Subsequent Two‐Electron Reduction. European Journal of Inorganic Chemistry, 2018(11), 1254-1265. https://doi.org/10.1002/ejic.201701209
  • Open Access
    Habraken, E. R. M., van Leest, N. P., Hooijschuur, P., de Bruin, B., Ehlers, A. W., Lutz, M., & Slootweg, J. C. (2018). Aryldiazonium Salts as Nitrogen-Based Lewis Acids: Facile Synthesis of Tuneable Azophosphonium Salts. Angewandte Chemie, International Edition, 57(37), 11929-11933. https://doi.org/10.1002/anie.201806913, https://doi.org/10.1002/ange.201806913
  • Open Access
    Habraken, E. R. M., van Leest, N. P., Hooijschuur, P., de Bruin, B., Ehlers, A. W., Lutz, M., & Slootweg, J. C. (2018). Aryldiazonium Salts as Nitrogen-Based Lewis Acids: Facile Synthesis of Tuneable Azophosphonium Salts. Angewandte Chemie, 130(37), 12105-12109. https://doi.org/10.1002/ange.201806913, https://doi.org/10.1002/anie.201806913
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