Bravo-Altamirano Karla, Abrunhosa-Thomas Isabelle, Montchamp Jean-Luc
Department of Chemistry, Box 298860, Texas Christian University, Fort Worth, Texas 76129, USA.
J Org Chem. 2008 Mar 21;73(6):2292-301. doi: 10.1021/jo702542a. Epub 2008 Feb 15.
Hypophosphorous compounds (MOP(O)H(2), M = H, R(3)NH) effectively participate in metal-catalyzed C-P bond-forming reactions with allenes, dienes, and activated allylic electrophiles under mild conditions. The catalytic system Pd(2)dba(3)/xantphos is crucial to avoid or minimize the competitive reductive transfer-hydrogenation pathway available to hypophosphorous acid derivatives. Further investigation into the allylation mechanism provided access to the analogy allylic acetate-allylic phosphinate, which then led to the development of a Pd-catalyzed rearrangement of preformed allylic phosphinates esters and, ultimately, to a catalytic dehydrative allylation of hypophosphorous acid with allylic alcohols. The reactions disclosed herein constitute efficient synthetic approaches, not only to prepare allylic H-phosphinic acids but also their esters via one-pot tandem processes. In addition, the potential of H-phosphinates as useful synthons for the preparation of other organophosphorus compounds is demonstrated.
次磷酸化合物(MOP(O)H₂,M = H,R₃NH)在温和条件下能有效地参与金属催化的与丙二烯、二烯及活化烯丙基亲电试剂形成C-P键的反应。催化体系Pd₂dba₃/xantphos对于避免或最小化次磷酸衍生物可用的竞争性还原转移氢化途径至关重要。对烯丙基化机理的进一步研究使得获得类似的烯丙基乙酸酯 - 烯丙基亚膦酸酯成为可能,进而导致了预先形成的烯丙基亚膦酸酯的钯催化重排,最终实现了次磷酸与烯丙醇的催化脱水烯丙基化。本文所公开的反应不仅构成了通过一锅串联法制备烯丙基H-亚膦酸及其酯的有效合成方法。此外,还证明了H-亚膦酸酯作为制备其他有机磷化合物的有用合成子的潜力。