4.6 Article

Radical Reactivity of the Biradical [•P(μ-NTer)2P•] and Isolation of a Persistent Phosphorus-Cantered Monoradical [•P(μ-NTer)2P-Et]

期刊

CHEMISTRY-A EUROPEAN JOURNAL
卷 28, 期 36, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.202200624

关键词

biradicals; molecular chemistry; persistent radicals; phosphorus chemistry; radical chemistry

资金

  1. Deutsche Forschungsgemeinschaft (DFG) [SCHU 1170/12-2]
  2. Konrad-Adenauer-Stiftung
  3. Projekt DEAL

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This study reports a new method for the activation of C-Br bonds in various bromoalkanes by a biradical, yielding 1,3-substituted cyclo-1,3-diphospha-2,4-diazanes, and the mechanism of the reaction was confirmed as a stepwise radical reaction through spectroscopic methods and experimental data.
The activation of C-Br bonds in various bromoalkanes by the biradical [center dot P(mu-NTer)(2)P center dot] (1) (Ter=2,6-bis-(2,4,6-trimethylphenyl)-phenyl) is reported, yielding trans-addition products of the type [Br-P(mu-NTer)(2)P-R] (2), so-called 1,3-substituted cyclo-1,3-diphospha-2,4-diazanes. This addition reaction, which represents a new easy approach to asymmetrically substituted cyclo-1,3-diphospha-2,4-diazanes, was investigated mechanistically by different spectroscopic methods (NMR, EPR, IR, Raman); the results suggested a stepwise radical reaction mechanism, as evidenced by the in-situ detection of the phosphorus-centered monoradical [center dot P(mu-NTer)(2)P-R].< To provide further evidence for the radical mechanism, [center dot P(mu-NTer)(2)P-Et] (3Et center dot) was synthesized directly by reduction of the bromoethane addition product [Br-P(mu-NTer)(2)P-Et] (2 a) with magnesium, resulting in the formation of the persistent phosphorus-centered monoradical [center dot P(mu-NTer)(2)P-Et], which could be isolated and fully characterized, including single-crystal X-ray diffraction. Comparison of the EPR spectrum of the radical intermediate in the addition reaction with that of the synthesized new [center dot P(mu-NTer)(2)P-Et] radical clearly proves the existence of radicals over the course of the reaction of biradical [center dot P(mu-NTer)(2)P center dot] (1) with bromoethane. Extensive DFT and coupled cluster calculations corroborate the experimental data for a radical mechanism in the reaction of biradical [center dot P(mu-NTer)(2)P center dot] with EtBr. In the field of hetero-cyclobutane-1,3-diyls, the demonstration of a stepwise radical reaction represents a new aspect and closes the gap between P-centered biradicals and P-centered monoradicals in terms of radical reactivity.

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