Slootweg J Chris, de Kanter Frans J J, Schakel Marius, Lutz Martin, Spek Anthony L, Kozhushkov Sergei I, de Meijere Armin, Lammertsma Koop
Department of Organic and Inorganic Chemistry, Faculty of Sciences, Vrije Universiteit, De Boelelaan 1083, 1081 HV, Amsterdam, The Netherlands.
Chemistry. 2005 Nov 18;11(23):6982-93. doi: 10.1002/chem.200500538.
Novel, highly stable, linear and branched mono- and diphospha[n]triangulanes were synthesized in high yields by the CuCl-catalyzed phosphinidene addition to spirocyclopropanated methylenecyclopropanes and bicyclopropylidenes. The effect of spirofusion on the electronic properties of these esthetically attractive phosphacycles is apparent from X-ray single crystal structure analyses, which reveals a tightening of the phosphirane ring on additional spirocyclopropanation, and from the NMR features that show deshielded chemical shifts for the ring-phosphorus and -carbon atoms. Steric factors play a role in the addition reaction when the substrate alkene carries a second sphere of spirocyclopropane rings and causes the formation of 2-phosphabicyclo[3.2.0]heptenes in small amounts. These by-products most probably result from addition of the [PhP(Cl)W(CO)(5)]-Cu-L (L=alkene or solvent) reagent to the spirocyclopropanated bicyclopropylidene to give an intermediate sigma-complex, which subsequently, facilitated by steric factors, undergoes a cyclopropylcarbinyl to cyclobutyl ring expansion followed by a [1,3]-sigmatropic shift.
通过氯化铜催化磷烯加成到螺环丙烷化的亚甲基环丙烷和双环亚丙基上,以高收率合成了新型、高度稳定的线性和支化单磷和双磷[n]三角烷。X射线单晶结构分析表明,螺稠合对这些具有美学吸引力的磷环电子性质有明显影响,该分析揭示了额外的螺环丙烷化会使磷杂环丙烷环收紧,核磁共振特征显示环磷和环碳原子的化学位移去屏蔽。当底物烯烃带有第二球层的螺环丙烷环时,空间因素在加成反应中起作用,并导致少量2-磷杂双环[3.2.0]庚烯的形成。这些副产物很可能是由于[PhP(Cl)W(CO)(5)]-Cu-L(L=烯烃或溶剂)试剂加成到螺环丙烷化的双环亚丙基上生成中间体σ-配合物,随后在空间因素的促进下,该中间体经历环丙基甲基到环丁基的环扩张,接着发生[1,3]-σ迁移反应。