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以氧气作为唯一氧化剂的氧化直接芳基化聚合反应:简便、绿色地合成基于联噻唑的聚合物。

Oxidative Direct Arylation Polymerization Using Oxygen as the Sole Oxidant: Facile, Green Access to Bithiazole-Based Polymers.

作者信息

Guo Qiang, Wu Di, You Jingsong

机构信息

Key Laboratory of Green Chemistry and Technology of the Ministry of Education, College of Chemistry, Sichuan University, 29 Wangjiang Road, Chengdu, 610064, China.

College of Optoelectronic Technology, Chengdu University of Information Technology, Chengdu, 610225, China.

出版信息

ChemSusChem. 2016 Oct 6;9(19):2765-2768. doi: 10.1002/cssc.201600827. Epub 2016 Aug 24.

Abstract

The most appealing oxidant, molecular oxygen, is employed for the first time as the sole oxidant in the transition metal-catalyzed oxidative direct arylation polymerization (C-H/C-H-type DArP), which eliminates by-product formation of stoichiometric metal salts except for water . Compared to conventional approaches, other than the avoidance of an end-capping procedure, the current protocol is remarkably advanced in the aspect of eco-friendliness, step- and cost-economy, and, of special significance, the purity of polymer products. As illustrative examples, six 5,5'-bithiazole-based polymers are synthesized using this new method, demonstrating higher number-average molecular weight (M up to 33 700) in better yields (up to 93 %) through only one step. The evolution of C-H/C-H-type DArP from heavy metal salts to O alone as the oxidant could solve the problem of metal residues in polymers, which is considered harmful to the performance of devices.

摘要

最具吸引力的氧化剂——分子氧,首次被用作过渡金属催化的氧化直接芳基化聚合反应(C-H/C-H型DArP)中的唯一氧化剂,该反应除了生成水之外,消除了化学计量金属盐副产物的形成。与传统方法相比,除了无需封端步骤外,当前方案在生态友好性、步骤经济性和成本经济性方面有显著进步,特别重要的是在聚合物产品纯度方面。作为示例,使用这种新方法合成了六种基于5,5'-联噻唑的聚合物,通过仅一步反应,以更高的产率(高达93%)得到了更高的数均分子量(M高达33700)。C-H/C-H型DArP从重金属盐到仅以O作为氧化剂的演变可以解决聚合物中金属残留的问题,而金属残留被认为对器件性能有害。

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