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. 2021 Jun 15;10(6):714-719. doi: 10.1021/acsmacrolett.1c00274. Epub 2021 May 21.
For over a decade, Direct Arylation Polymerization (DArP) has been demonstrated to be an eco-friendly, facile, and low-cost alternative to conventional methodologies such as Stille polymerization for conjugated polymer synthesis. By accessing through a C-H activation pathway, DArP offers a reduction of synthetic steps while eliminating the generation of stoichiometric, highly toxic organotin byproducts. However, as the major component in these reactions, the solvents most prevalently employed for DArP are hazardous and produced from unsustainable sources, such as dimethylacetamide (DMA), tetrahydrofuran (THF), and toluene. Although the use of sustainable alternative solvents such as 2-MeTHF and cyclopentyl methyl ether (CPME) has recently emerged, drawbacks of ethereal solvents include the need for a pressurized reaction setup as well as potential peroxide formation. While aromatic solvents are superior in solubilizing conjugated polymers, very little has been done in searching for more sustainable, benign alternatives for this class of solvent. Herein, we report the application of a sustainable, naturally sourced, high-boiling aromatic solvent, p-cymene, to DArP for the first time. p-Cymene was found to display excellent solubilizing ability in the synthesis of a broad scope of alternating copolymers with up to 51.3 kg/mol and yields up to 96.2%, outperforming those prepared using CPME and toluene. Structural analysis revealed the exclusion of defects in these polymers prepared using p-cymene as the solvent which, in the case of a 2,2'-bithiophene monomer, is challenging to access through the use of conventional solvents for DArP, such as DMA and toluene.
十多年来,直接芳基化聚合反应(DArP)已被证明是一种环境友好、简便且低成本的方法,可替代传统方法(如用于合成共轭聚合物的Stille聚合反应)。通过C-H活化途径,DArP减少了合成步骤,同时消除了化学计量的、剧毒有机锡副产物的产生。然而,作为这些反应的主要成分,DArP最常用的溶剂具有危险性且来自不可持续的来源,如二甲基乙酰胺(DMA)、四氢呋喃(THF)和甲苯。尽管最近出现了使用可持续替代溶剂(如2-甲基四氢呋喃和环戊基甲基醚(CPME))的情况,但醚类溶剂的缺点包括需要加压反应装置以及潜在的过氧化物形成。虽然芳香族溶剂在溶解共轭聚合物方面更具优势,但在寻找这类溶剂更可持续、更良性的替代品方面所做的工作很少。在此,我们首次报道了一种可持续的、天然来源的高沸点芳香族溶剂对异丙基甲苯在DArP中的应用。发现在合成一系列交替共聚物时,对异丙基甲苯表现出优异的溶解能力,其分子量高达51.3 kg/mol,产率高达96.2%,优于使用CPME和甲苯制备的共聚物。结构分析表明,使用对异丙基甲苯作为溶剂制备的这些聚合物不存在缺陷,而对于2,2'-联噻吩单体,使用DArP的传统溶剂(如DMA和甲苯)难以做到这一点。