Department of Chemistry and Biochemistry, Auburn University , Auburn, Alabama 36849, United States.
J Am Chem Soc. 2016 Mar 9;138(9):3235-40. doi: 10.1021/jacs.6b00538. Epub 2016 Feb 24.
A series of p-terphenyl-based macrocycles, containing highly distorted p-phenylene units, have been synthesized. Biaryl bonds of the nonplanar p-terphenyl nuclei were constructed in the absence of Pd-catalyzed or Ni-mediated cross-coupling reactions, using 1,4-diketones as surrogates to strained arene units. A streamlined synthetic protocol for the synthesis of 1,4-diketo macrocycles has been developed, using only 2.5 mol % of the Hoveyda-Grubbs second-generation catalyst in both metathesis and transfer hydrogenation reactions. Under protic acid-mediated dehydrative aromatization conditions, the central and most strained benzene ring of the p-terphenyl systems was susceptible to rearrangement reactions. To overcome this, a dehydrative aromatization protocol using the Burgess reagent was developed. Under these conditions, no strain-induced rearrangement reactions occur, delivering p-phenylene units with up to 28.4 kcal/mol strain energy and deformation angles that sum up to 40°.
已经合成了一系列基于对三联苯的大环,其中包含高度扭曲的对苯撑单元。非平面对三联苯核的联苯键是在没有 Pd 催化或 Ni 介导的交叉偶联反应的情况下构建的,使用 1,4-二酮作为应变芳烃单元的替代物。已经开发了一种用于合成 1,4-二酮大环的简化合成方案,在复分解和转移氢化反应中仅使用 2.5 mol%的 Hoveyda-Grubbs 第二代催化剂。在质子酸介导的脱水芳构化条件下,对三联苯系统的中心和最受应变的苯环易发生重排反应。为了克服这一点,开发了一种使用 Burgess 试剂的脱水芳构化方案。在这些条件下,不会发生应变诱导的重排反应,从而提供高达 28.4 kcal/mol 应变能和总变形角为 40°的对苯撑单元。