Division of Earth, Life, and Molecular Sciences, Graduate School of Natural Science and Technology, Okayama University, 3-1-1 Tsushimanaka, Kita-ku, Okayama 700-8530 (Japan).
Angew Chem Int Ed Engl. 2014 Dec 8;53(50):13880-4. doi: 10.1002/anie.201408121. Epub 2014 Oct 15.
The radical addition of the Cl-S σ-bond in sulfenyl chlorides to various C-C triple bonds has been achieved with excellent regio- and stereoselectivity in the presence of a catalytic amount of a common iron salt. The reaction is compatible with a variety of functional groups and can be scaled up to the gram-scale with no loss in yield. As well as terminal alkynes, internal alkynes underwent stereodefined chlorothiolation to provide tetrasubstituted alkynes. Preliminary mechanistic investigations revealed a plausible radical process involving a sulfur-centered radical intermediate via iron-mediated homolysis of the Cl-S bond. The resulting chlorothiolation adducts can be readily transformed to the structurally complex alkenyl sulfides by cross-coupling reactions. The present reaction can also be applied to the complementary synthesis of the potentially useful bis-sulfoxide ligands for transition-metal-catalyzed reactions.
在少量常见铁盐的催化下,实现了磺酰氯与各种 C-C 三键的 Cl-S σ 键的自由基加成,具有极好的区域和立体选择性。该反应与多种官能团兼容,并可在不损失产率的情况下扩大到克级规模。除了末端炔烃外,内部炔烃也经历了立体定义的氯硫醇化反应,以提供四取代炔烃。初步的机理研究表明,该反应可能涉及通过铁介导的 Cl-S 键均裂产生的硫中心自由基中间体的自由基过程。所得的氯硫醇加成物可以通过交叉偶联反应很容易地转化为结构复杂的烯基硫醚。本反应也可应用于用于过渡金属催化反应的潜在有用的双亚砜配体的互补合成。