McGlinchey Michael J, Nikitin Kirill
School of Chemistry, University College Dublin, Belfield, D04 V1W8, Dublin 4, Ireland.
Molecules. 2020 Apr 22;25(8):1950. doi: 10.3390/molecules25081950.
Pd-catalysed Stille and Suzuki cross-couplings were used to prepare 9-(3-indenyl)-, 6, and 9-(2-indenyl)-anthracene, 7; addition of benzyne led to the 9-Indenyl-triptycenes, 8 and 9. In 6, [4 + 2] addition also occurred to the indenyl substituent. Reaction of 6 through 9 with Cr(CO) or Re(CO) gave their M(CO) derivatives, where the Cr or Re was complexed to a six- or five-membered ring, respectively. In the 9-(2-indenyl)triptycene complexes, slowed rotation of the paddlewheel on the NMR time-scale was apparent in the η-Re(CO) case and, when the η-Cr(CO) was deprotonated, the resulting haptotropic shift of the metal tripod onto the five-membered ring also blocked paddlewheel rotation, thus functioning as an organometallic molecular brake. Suzuki coupling of ferrocenylboronic acid to mono- or dibromoanthracene yielded the ferrocenyl anthracenes en route to the corresponding triptycenes in which stepwise hindered rotations of the ferrocenyl groups behaved like molecular dials. CuCl-mediated coupling of methyl- and phenyl-indenes yielded their and 2,2'-biindenyls; surprisingly, however, the apparently sterically crowded 2,2'-Bis(9-triptycyl)biindenyl functioned as a freely rotating set of molecular gears. The predicted high rotation barrier in 9-phenylanthracene was experimentally validated via the Pd-catalysed syntheses of di(3-fluorophenyl)anthracene and 9-(1-naphthyl)-10-phenylanthracene.
钯催化的施蒂勒(Stille)和铃木(Suzuki)交叉偶联反应被用于制备9-(3-茚基)-蒽(6)和9-(2-茚基)-蒽(7);苯炔的加成反应生成了9-茚基-三棱并苯(8和9)。在化合物6中,茚基取代基也发生了[4 + 2]加成反应。化合物6至9与Cr(CO)₆或Re(CO)₅反应生成了它们的M(CO)衍生物,其中Cr或Re分别与一个六元环或五元环配位。在9-(2-茚基)三棱并苯配合物中,在η-Re(CO)₅的情况下,在核磁共振时间尺度上桨轮的旋转明显减慢,并且当η-Cr(CO)₃去质子化时,金属三脚架向五元环的迁移异构化位移也阻碍了桨轮的旋转,因此起到了有机金属分子制动器的作用。二茂铁硼酸与单溴或二溴蒽的铃木偶联反应生成了二茂铁基蒽,进而生成相应的三棱并苯,其中二茂铁基团的逐步受阻旋转表现得像分子刻度盘。CuCl介导的甲基茚和苯基茚的偶联反应生成了它们的1,1'-和2,2'-联茚;然而,令人惊讶的是,表面上空间拥挤的2,2'-双(9-三棱并苯基)联茚起到了一组自由旋转的分子齿轮的作用。通过钯催化合成二(3-氟苯基)蒽和9-(1-萘基)-10-苯基蒽,实验验证了9-苯基蒽中预测的高旋转势垒。