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首页> 外文期刊>Macromolecules >RuPhos Pd Precatalyst and MIDA Boronate as an Effective Combination for the Precision Synthesis of Poly(3-hexylthiophene): Systematic Investigation of the Effects of Boronates, Halides, and Ligands
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RuPhos Pd Precatalyst and MIDA Boronate as an Effective Combination for the Precision Synthesis of Poly(3-hexylthiophene): Systematic Investigation of the Effects of Boronates, Halides, and Ligands

机译:官方Pd预催化剂和Mida硼酸盐作为聚(3-己烯烯)精确合成的有效组合:系统调查硼酸盐,卤化物和配体的影响

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Herein, we report detailed mechanistic studies of Suzuki-Miyaura catalyst-transfer polycondensation (SCTP) of thiophene. The effects of boronates, halides, ligands, and chain transfer agents (CTAs) on the control of polymerization were systematically investigated in detail by SEC, H-1 NMR and MALDI-TOF analyses. Initially, we identified that the use of the slowhydrolyzing N-methyliminodiacetic acid (MIDA) boronate in place of conventional pinacol boronate effectively suppressed side reactions such as protodeboronation, homocoupling, and chain transfer reactions, thereby improving control of SCTP. Screening halides revealed that the monomer containing bromide was optimal for SCTP, resulting in less side reactions. Moreover, screening several ligands and adding a CTA further supported our conclusion that the RuPhos-Pd system showed the best catalyst-transfer ability among the tested catalysts. We further elucidated that externally added ligands effectively stabilized living chain-ends and suppressed chain transfer, thereby achieving controlled polymerization.
机译:在此,我们报告了噻吩的Suzuki-miyaura催化剂转移缩聚(SCTP)的详细机制研究。通过SEC,H-1 NMR和MALDI-TOF分析系统地研究了硼酸盐,卤化物,配体和链转移剂(CTA)对聚合控制的影响。最初,我们认为使用慢水解的N-甲基氨基二乙酰酸(Mida)硼酸盐代替常规的Pinacol硼酸盐,有效地抑制了副反应,例如Protodeboronation,同性耦合和链转移反应,从而改善了SCTP的控制。筛选卤化物显示,含有溴化物的单体对SCTP最佳,导致副反应更少。此外,筛选几种配体并添加CTA进一步支持我们的结论是,官方-PD系统在测试催化剂中显示出最佳的催化剂转移能力。我们进一步阐明了外部添加的配体有效稳定活性链末端并抑制链转移,从而实现了受控聚合。

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