Davenport Research Laboratories, Department of Chemistry, University of Toronto , Toronto, Ontario M5S 3H6, Canada.
Department of Organic Chemistry, University of Geneva , 30 Quai Ernest Ansermet, 1211 Geneva, Switzerland.
J Am Chem Soc. 2017 Mar 8;139(9):3546-3557. doi: 10.1021/jacs.7b00482. Epub 2017 Feb 27.
Difficulties associated with handling H and CO in metal-catalyzed processes have led to the development of chemical surrogates to these species. Despite many successful examples using this strategy, the application of convenient hydrogen halide (HX) surrogates in catalysis has lagged behind considerably. We now report the use of ammonium halides as HX surrogates to accomplish a Pd-catalyzed hydrohalogenation of enynes. These safe and practical salts avoid many drawbacks associated with traditional HX sources including toxicity and corrosiveness. Experimental and computational studies support a reaction mechanism involving a crucial E-to-Z vinyl-Pd isomerization and a carbon-halogen bond-forming reductive elimination. Furthermore, rare examples of C(sp)-Br and -Cl reductive elimination from Pd(II) as well as transfer hydroiodination using 1-iodobutane as an alternate HI surrogate are also presented.
与金属催化过程中 H 和 CO 的处理相关的困难导致了这些物质的化学替代物的发展。尽管使用这种策略有许多成功的例子,但方便的氢卤化物 (HX) 替代物在催化中的应用却大大滞后。我们现在报告使用卤化铵作为 HX 替代物来完成钯催化的烯炔氢卤化反应。这些安全实用的盐避免了传统 HX 源的许多缺点,包括毒性和腐蚀性。实验和计算研究支持涉及关键的 E 到 Z 乙烯基-Pd 异构体化和碳-卤键形成还原消除的反应机制。此外,还提出了钯 (II) 从 C(sp)-Br 和 -Cl 还原消除的罕见例子,以及使用 1-碘丁烷作为替代 HI 替代物的转移碘化反应。