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Recent developments in the synthesis of regioregular thiophene-based conjugated polymers for electronic and optoelectronic applications using nickel and palladium-based catalytic systems

机译:基于镍和钯的催化系统的电子和光电应用合成植物基噻吩基共轭聚合物的最新发展

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Thiophene-based conjugated polymers hold an irreplaceable position among the continuously growing plethora of conjugated polymers due to their exceptional optical and conductive properties, which has made them a centre of attention for the past few decades and many researchers have contributed tremendously by designing novel strategies to reach more efficient materials for electronic applications. This review aims to highlight the recent (2012-2019) findings in design and synthesis of novel thiophene-based conjugated polymers for optical and electronic devices using organometallic polycondensation strategies. Nickel- and palladium-based protocols are the main focus of this account. Among them nickel-catalyzed Kumada catalyst-transfer polycondensation, nickel-catalyzed deprotonative cross-coupling polycondensation, palladium-catalyzed Suzuki-Miyaura and Migita-Kosugi-Stille couplings are the most popular strategies known so far for the synthesis of functionalized regioregular polythiophenes exhibiting fascinating properties such as electronic, optoelectronic, chemosensitivity, liquid crystallinity and high conductivity. This account also presents a brief overview of direct arylation polymerization (DArP) protocol that has shown a great potential to lessen the drawbacks of conventional polymerization techniques. DArP is a cost-effective and green method as it circumvents the need for the synthesis of arylene diboronic acid/diboronic ester and distannyl arylenes using toxic precursors. DArP also puts off the need to preactivate the C-H bonds, hence, presenting a facile route to synthesize polymers with controlled molecular weight, low polydispersity index, high regioregularity and tunable optoelectronic properties using palladium-based catalytic systems.
机译:基于噻吩基的共轭聚合物在连续生长的缀合聚合物中具有不可替代的位置,因为它们具有出色的光学和导电性能,这使得它们在过去的几十年中使他们的注意力使得许多研究人员通过设计新的策略来贡献巨大贡献更高效的电子应用材料。本综述旨在使用有机金属缩聚策略突出新的噻吩基缀合聚合物的设计和合成的设计和合成的研究结果。基于镍和钯的协议是本帐户的主要重点。其中镍催化的熊猫催化剂 - 转移缩聚,镍催化的脱质子偶联缩聚,钯催化的铃木咪榴狼和Migita-Kosugi-stille偶联是迄今为止官能化摄影聚噻吩的合成所知的最普遍的策略特性,如电子,光电,化学敏感,液晶度和高导电性。该账户还介绍了直接芳基化聚合(DARP)方案的概述,其示出了减少常规聚合技术的缺点的巨大潜力。 DARP是一种经济型和绿色的方法,因为它避免了使用毒性前体来合成亚芳基二硼酸/脱硼酸/沥青酯和延纳基芳基的需要。 DARP还揭开了必须通过基于钯的催化体系呈现具有受控分子量,低​​多分散性指数,高regioreguleary和可调谐光电性能的容易途径来捕获C-H键。

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  • 来源
    《RSC Advances 》 |2020年第8期| 共75页
  • 作者单位

    Quaid I Azam Univ Dept Chem Islamabad 45320 Pakistan;

    Quaid I Azam Univ Dept Chem Islamabad 45320 Pakistan;

    Quaid I Azam Univ Dept Chem Islamabad 45320 Pakistan;

    Istanbul Tech Univ Dept Chem TR-34469 Istanbul Turkey;

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  • 正文语种 eng
  • 中图分类 化学 ;
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