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Novel Conjugated Polymers Prepared by Direct (Hetero) arylation: An Eco-Friendly Tool for Organic Electronics

机译:通过直接(杂)芳基化制备的新型共轭聚合物:有机电子产品的生态友好工具

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摘要

The phthalimide (PhI) moiety has been attracting more attention as an excellent acceptor building block in donor-acceptor (D-A) conjugated polymers. In this paper; three D-A conjugated polymers with or without thiocarbonyl moieties are successfully prepared by the direct (hetero)-arylation polymerization (DHAP), which is an atom efficient and facile synthetic strategy to obtain polymer materials. Compared with the traditional carbon-carbon coupling reactions, this method possesses more advantages, including: fewer synthetic steps, avoidance of the preparation of the organometallic reagents, higher atom economy and fewer toxic byproducts, better compatibility with chemically sensitive functional groups and so on. All three of these designed PhI-based polymers exhibited favourable optoelectronic and thermal performance. The optical, thermodynamic and electrochemical properties of the synthesized polymers were systematically investigated using ultraviolet-visible (UV-vis) spectroscopy, thermogravimetric analysis (TGA), differential scanning calorimetry (DSC) and cyclic voltammetry (CV). The results of these three polymers indicated that thionation of the carbonyl was a highly effective methods to improve the properties of PhI-based polymers; and provided impetus for the development of thionated PhI derivatives for organic electronic applications.
机译:作为供体-受体(D-A)共轭聚合物中出色的受体结构单元,邻苯二甲酰亚胺(PhI)部分已引起更多关注。本文通过直接(杂)芳基化聚合(DHAP)成功地制备了三种具有或不具有硫羰基部分的D-A共轭聚合物,这是一种获得聚合物材料的原子高效且简便的合成策略。与传统的碳-碳偶联反应相比,该方法具有更多的优点,包括:合成步骤更少,避免了有机金属试剂的制备,原子经济性更高,毒性副产物更少,与化学敏感性官能团的相容性更好等。所有这三种基于PhI的设计聚合物均显示出良好的光电性能和热性能。使用紫外可见光谱,热重分析(TGA),差示扫描量热法(DSC)和循环伏安法(CV)系统地研究了合成聚合物的光学,热力学和电化学性质。这三种聚合物的结果表明,羰基的硫磺化是改善基于PhI的聚合物性能的高效方法。并为开发用于有机电子应用的亚硫酰PhI衍生物提供了动力。

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