Mondal Mukulesh, Puranik Vedavati G, Argade Narshinha P
Division of Organic Chemistry (Synthesis) and Centre for Material Characterization, National Chemical Laboratory, Pune 411 008, India.
J Org Chem. 2007 Mar 16;72(6):2068-76. doi: 10.1021/jo0624344. Epub 2007 Feb 14.
The complex bioactive natural and unnatural benzopyran congeners have been synthesized using one-/two-step approaches in very good yields from the reactions of two different dihydroxyphthalides, natural resorcyclic acid derivative, and trihydroxybenzophenone with citral and/or farnesal, via the phenol-driven intramolecular diastereoselective thermal/base-catalyzed dipolar [2+2] cycloaddition reactions and three different thermal intramolecular cyclization reactions. The effects of the nature and the position of phenolic groups in the starting materials on the course of these cycloaddition reactions have also been described. Depending upon the absence or presence of intramolecular hydrogen bonding of the phenolic group with the carbonyl moiety in the starting materials, these phenol-driven intramolecular thermal/base-catalyzed dipolar [2+2] cycloaddition reactions either furnished the kinetically controlled products or directly formed the thermodynamically controlled rearranged products, respectively.
通过酚驱动的分子内非对映选择性热/碱催化偶极[2+2]环加成反应以及三种不同的热分子内环化反应,使用一步/两步法,由两种不同的二羟基邻苯二甲酸酯、天然间苯二酚酸衍生物和三羟基二苯甲酮与柠檬醛和/或法呢醛反应,以非常高的产率合成了复杂的生物活性天然和非天然苯并吡喃同系物。还描述了起始原料中酚羟基的性质和位置对这些环加成反应过程的影响。根据起始原料中酚羟基与羰基部分是否存在分子内氢键,这些酚驱动的分子内热/碱催化偶极[2+2]环加成反应分别提供动力学控制的产物或直接形成热力学控制的重排产物。