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首页> 外文期刊>Journal of the American Chemical Society >A Rational Design of Highly Controlled Suzuki-Miyaura Catalyst- Transfer Polycondensation for Precision Synthesis of Polythiophenes and Their Block Copolymers: Marriage of Palladacycle Precatalysts with MIDA-Boronates
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A Rational Design of Highly Controlled Suzuki-Miyaura Catalyst- Transfer Polycondensation for Precision Synthesis of Polythiophenes and Their Block Copolymers: Marriage of Palladacycle Precatalysts with MIDA-Boronates

机译:精确控制聚噻吩及其嵌段共聚物的高度控制的Suzuki-Miyaura催化剂转移缩聚反应的合理设计:将Palladacycle预催化剂与MIDA-硼酸酯结合

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摘要

Herein, we report a highly efficient Suzuki–Miyaura catalyst-transfer polycondensation (SCTP) of 3-alkylthiophenes using bench-stable but highly active Buchwald dialkylbiarylphospine Pd G3 precatalysts and N -methylimidodiacetic (MIDA)-boronate monomers. Initially, the feasibility of the catalyst-transfer process was examined by screening various dialkylbiarylphospine-Pd(0) species. After optimizing a small molecule model reaction, we identified both RuPhos and SPhos Pd G3 precatalysts as excellent catalyst systems for this purpose. On the basis of these model studies, SCTP was tested using either RuPhos or SPhos Pd G3 precatalyst, and 5-bromo-4-n -hexylthien-2-yl-pinacol-boronate. Poly(3-hexylthiophene) (P3HT) was produced with controlled molecular weight and narrow dispersity for a low degree of polymerization (DP) only, while attempts to synthesize P3HT having a higher DP with good control were unsuccessful. To improve the control, slowly hydrolyzed 5-bromo-4-n -hexylthien-2-yl-MIDA-boronate was introduced as a new monomer. As a result, P3HT and P3EHT (up to 17.6 kg/mol) were prepared with excellent control, narrow dispersity, and excellent yield (>90%). Detailed mechanistic investigation using ~(31)P NMR and MALDI-TOF spectroscopy revealed that both fast initiation using Buchwald precatalysts and the suppression of protodeboronation due to the protected MIDA-boronate were crucial to achieve successful living polymerization of P3HT. In addition, a block copolymer of P3HT-b -P3EHT was prepared via SCTP by sequential addition of each MIDA-boronate monomer. Furthermore, the same block copolymer was synthesized by one-shot copolymerization for the first time by using fast propagating pinacol-boronate and slow propagating MIDA-boronate.
机译:本文中,我们报告了使用稳定的但高效的布赫瓦尔德二烷基联芳基膦膦Pd G3预催化剂和N-甲基亚氨基二乙酸(MIDA)-硼酸酯单体对3-烷基噻吩进行的高效Suzuki-Miyaura催化剂转移缩聚(SCTP)。最初,通过筛选各种二烷基联芳基膦-Pd(0)物质来检验催化剂转移过程的可行性。优化了小分子模型反应后,我们确定RuPhos和SPhos Pd G3预催化剂均是出色的催化剂体系。基于这些模型研究,使用RuPhos或SPhos Pd G3预催化剂和5-溴-4-n-己基噻吩-2-基-频哪醇-硼酸酯测试了SCTP。聚(3-己基噻吩)(P3HT)仅在低聚合度(DP)的情况下生产具有可控制的分子量和窄的分散性,而尝试以良好的控制合成具有较高DP的P3HT是不成功的。为了改善控制,引入了缓慢水解的5-溴-4-n-己基噻吩-2-基-MIDA-硼酸酯作为新的单体。结果,制备的P3HT和P3EHT(最高17.6kg / mol)具有优异的控制,分散性窄和优异的产率(> 90%)。使用〜(31)P NMR和MALDI-TOF光谱进行的详细机理研究表明,使用布赫瓦尔德(Buchwald)预催化剂的快速引发和由于受保护的MIDA-硼酸酯引起的原硼烷的抑制对于成功实现P3HT活性聚合至关重要。另外,通过依次加入各MIDA-硼酸酯单体,通过SCTP制备了P3HT-b-P3EHT的嵌段共聚物。此外,通过使用快速传播的频哪醇-硼酸酯和慢速传播的MIDA-硼酸酯,通过一次一次性共聚来合成相同的嵌段共聚物。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2018年第12期|4335-4343|共9页
  • 作者单位

    Department of Chemistry, Seoul National University, Seoul 08826, Korea;

    Department of Chemistry, Ajou University, Suwon 16499, Korea;

    Department of Chemistry, Seoul National University, Seoul 08826, Korea;

    Department of Chemistry, Seoul National University, Seoul 08826, Korea;

    Department of Chemistry, Seoul National University, Seoul 08826, Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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