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通往分子机器的钯催化偶联反应:位阻茚基和二茂铁基蒽、并三苯以及联茚基化合物

Palladium-Catalysed Coupling Reactions En Route to Molecular Machines: Sterically Hindered Indenyl and Ferrocenyl Anthracenes and Triptycenes, and Biindenyls.

作者信息

McGlinchey Michael J, Nikitin Kirill

机构信息

School of Chemistry, University College Dublin, Belfield, D04 V1W8, Dublin 4, Ireland.

出版信息

Molecules. 2020 Apr 22;25(8):1950. doi: 10.3390/molecules25081950.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1ff/7222022/e860740bd339/molecules-25-01950-g001.jpg

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