π-Conjugated polymers consisting of heavier group 13 elements

IF 3.9 2区 化学 Q2 POLYMER SCIENCE Polymer Chemistry Pub Date : 2025-04-17 DOI:10.1039/D5PY00116A
Shunichiro Ito and Kazuo Tanaka
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Abstract

Boron, aluminum, gallium, indium, and thallium are group 13 elements that can induce various electronic properties and unique functions when incorporated into main-chain conjugation through polymers. As vacant p-orbitals in these elements interact with Lewis bases, stimuli responsiveness can be induced. Additionally, the chemical and thermal stability can be enhanced by connecting with extra Lewis bases as supporting ligands. Moreover, superior optoelectronic properties, such as light absorption, emission, and carrier mobility, are often observed from group 13 element-containing π-conjugated systems. The introduction of boron into conjugated systems has been widely applied not only for improving material properties but also for providing new functionalities for conventional polymers. In contrast, there are limited examples of polymers possessing the heavier group 13 elements in their repeating units. According to recent studies, it has been shown that the chemical, physical, and material properties of π-conjugated compounds can be unexpectedly modulated by these heavier group 13 elements. In this review, we mainly explain the synthesis and fundamental photophysical properties of conjugated polymers consisting of the heavier group 13 elements in their main-chains.

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π-由较重的第 13 族元素组成的共轭聚合物
硼、铝、镓、铟和铊是13族元素,当通过聚合物结合到主链共轭中时,可以诱导出各种电子性质和独特的功能。由于这些元件中的空p轨道与路易斯碱基相互作用,可以诱导刺激反应。此外,通过连接额外的路易斯碱作为支撑配体,可以提高化学稳定性和热稳定性。此外,含有13族元素的π共轭体系具有优异的光电性能,如光吸收、发射和载流子迁移率。在共轭体系中引入硼不仅可以改善材料性能,还可以为传统聚合物提供新的功能。相比之下,在重复单元中含有较重的13族元素的聚合物的例子有限。根据最近的研究表明,π共轭化合物的化学、物理和材料性质可以被这些较重的13族元素意想不到地调节。本文主要介绍了主链上含有较重13族元素的共轭聚合物的合成及其基本光物理性质。
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来源期刊
Polymer Chemistry
Polymer Chemistry POLYMER SCIENCE-
CiteScore
8.60
自引率
8.70%
发文量
535
审稿时长
1.7 months
期刊介绍: Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.
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