Heilmann Tobias, Lopez-Soria Juan M, Ulbrich Johannes, Kircher Johannes, Li Zhen, Worbs Brigitte, Golz Christopher, Mata Ricardo A, Alcarazo Manuel
Institut für Organische und Biomolekulare Chemie, Georg-August-Universität Göttingen, Tammannstr. 2, D-37077, Göttingen, Germany.
Institut für Physikalische Chemie, Georg-August-Universität Göttingen, Tammannstr. 6, D-37077, Göttingen, Germany.
Angew Chem Int Ed Engl. 2024 Jun 17;63(25):e202403826. doi: 10.1002/anie.202403826. Epub 2024 May 16.
The one-pot synthesis of λ-dibenzothiophen-5-imino-N-dibenzothiophenium triflate (1) in multigram scale is reported. This compound reacts with Rh(esp) (esp=α,α,α',α'-tetramethyl-1,3-benzenedipropionic acid) generating a Rh-coordinated sulfonitrene species, which is able to transfer the electrophilic nitrene moiety to olefins. When indenes are used as substrates, isoquinolines are obtained in good yields. We assumed that after formation of the corresponding N-sulfonio aziridine, a ring expansion occurs via selective C-C bond cleavage and concomitant elimination of dibenzothiophene. Unexpectedly, a similar protocol transforms 1-arylcyclobutenes into 1-cyano-1-arylcyclopropanes. Our calculations indicate that aziridination is not favored in this case; instead, sulfilimine-substituted cyclobutyl carbocations are initially formed, and these evolve to the isolated cyclopropanes via ring contraction. Both procedures are operationally simple, tolerate a range of functional groups, including oxidation-sensitive alcohols and aldehydes, and enable the convenient preparation of valuable N-labelled products. These results demonstrate the potential of 1 to provide alternative pathways for the selective transfer of N-atoms in organic molecules.
报道了以多克规模一锅法合成λ-二苯并噻吩-5-亚氨基-N-二苯并噻吩三氟甲磺酸盐(1)。该化合物与Rh(esp)(esp = α,α,α',α'-四甲基-1,3-苯二甲酸)反应生成一种Rh配位的磺氮烯物种,该物种能够将亲电氮烯部分转移到烯烃上。当茚用作底物时,可以高收率得到异喹啉。我们推测在相应的N-磺酰基氮丙啶形成后,会通过选择性的C-C键断裂和伴随的二苯并噻吩消除发生扩环反应。出乎意料的是,类似的方法可将1-芳基环丁烯转化为1-氰基-1-芳基环丙烷。我们的计算表明在这种情况下氮丙啶化反应并不有利;相反,最初会形成亚磺酰亚胺取代的环丁基碳正离子,这些碳正离子通过环收缩演变为分离的环丙烷。这两种方法操作简单,能耐受多种官能团,包括对氧化敏感的醇和醛,并且能够方便地制备有价值的N-标记产物。这些结果证明了1为有机分子中N原子的选择性转移提供替代途径的潜力。