Pankow Robert M, Ye Liwei, Thompson Barry C
Department of Chemistry and Loker Hydrocarbon Research Institute, University of Southern California, Los Angeles, California 90089-1661, United States.
ACS Macro Lett. 2018 Oct 16;7(10):1232-1236. doi: 10.1021/acsmacrolett.8b00618. Epub 2018 Sep 20.
Direct arylation polymerization (DArP) has enabled the more sustainable synthesis of conjugated polymers through the reduction of waste, elimination of toxic and hazardous byproducts, and through the reduction of overall synthetic steps. However, DArP methodologies have almost exclusively relied on the use of noble metal catalysts, such as those with Pd, counter to the efforts toward sustainability. Herein, we report the optimized synthesis of a flourinated arylene conjugated copolymer via DArP using a low-cost, sustainable copper catalyst. Through optimization of the polymerization conditions, we are able to lower the loading of the catalyst from 50 to 5 mol %. As an example, we are able to obtain molecular weights of 16.4 kDa, accompanied by a yield of 54%, with a loading of only 5 mol % for the Cu catalyst. The synthesized polymers were characterized using H and F NMR spectroscopy, showing agreement with those previously prepared with a minimization or exclusion of defects. This work also demonstrates that Cu-catalyzed DArP methodologies can be compatible with substrates that do not possess directing groups, which can help to facilitate C-H functionalization, allowing for a broadening of substrate scope.
直接芳基化聚合反应(DArP)通过减少废物产生、消除有毒有害副产物以及减少整体合成步骤,实现了共轭聚合物更可持续的合成。然而,DArP方法几乎完全依赖于使用贵金属催化剂,如含钯催化剂,这与可持续发展的努力背道而驰。在此,我们报道了使用低成本、可持续的铜催化剂,通过DArP优化合成含氟亚芳基共轭共聚物。通过优化聚合条件,我们能够将催化剂负载量从50%降至5%。例如,在铜催化剂负载量仅为5%的情况下,我们能够获得分子量为16.4 kDa、产率为54%的聚合物。使用氢和氟核磁共振光谱对合成的聚合物进行了表征,结果表明与之前制备的缺陷最小化或无缺陷的聚合物一致。这项工作还表明,铜催化的DArP方法可以与不具有导向基团的底物兼容,这有助于促进C-H官能化,从而扩大底物范围。