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用于高效光电器件的具有主链手性的新型共轭聚合物的合理设计:碳[6]螺旋烯与茚并二噻吩共聚物作为模型化合物

Rational Design of New Conjugated Polymers with Main Chain Chirality for Efficient Optoelectronic Devices: Carbo[6]Helicene and Indacenodithiophene Copolymers as Model Compounds.

作者信息

Gedeon Clement, Del Rio Natalia, Furlan Francesco, Taddeucci Andrea, Vanthuyne Nicolas, Gregoriou Vasilis G, Fuchter Matthew J, Siligardi Giuliano, Gasparini Nicola, Crassous Jeanne, Chochos Christos L

机构信息

Advent Technologies SA., Stadiou Str, Patras, Platani, 26504, Greece.

Univ Rennes, CNRS, ISCR - UMR 6226, Rennes, 35000, France.

出版信息

Adv Mater. 2024 Jun;36(25):e2314337. doi: 10.1002/adma.202314337. Epub 2024 Mar 20.

Abstract

The unique properties of conjugated polymers (CPs) in various optoelectronic applications are mainly attributed to their different self-assembly processes and superstructures. Various methods are utilized to tune and control CP structure and properties with less attention paid to the use of chirality. CPs with main chain chirality are rare and their microscopic and macroscopic properties are still unknown. In this work, the first experimental results are provided along these lines by synthesizing a series of racemic and enantiopure CPs containing statistical and alternating carbo[6]helicene and indacenodithiophene moieties and evaluating their microscopic (optical, energy levels) and macroscopic properties (hole mobilities, photovoltaic performance). It is demonstrated that a small statistical insertion of either the racemic or enantiopure helicene into the polymer backbone finely tunes the microscopic and macroscopic properties as a function of the statistical content. The microscopic properties of the enantiopure versus the racemic polymers with the same helicene loading remain similar. On the contrary, the macroscopic properties, and more interestingly those between the two enantiomeric forms, are altered as a function of the statistical content. Once incorporated into a solar cell device, these chiral CPs display better performance in their enantiopure versus racemic forms.

摘要

共轭聚合物(CPs)在各种光电器件应用中的独特性能主要归因于其不同的自组装过程和超结构。人们采用了各种方法来调节和控制CP的结构与性能,而对手性的利用关注较少。具有主链手性的CPs很少见,其微观和宏观性质仍然未知。在这项工作中,通过合成一系列含有统计性和交替性碳[6]螺旋烯和茚并二噻吩部分的外消旋和对映体纯的CPs,并评估其微观(光学、能级)和宏观性质(空穴迁移率、光伏性能),沿着这些方向提供了首个实验结果。结果表明,将外消旋或对映体纯的螺旋烯少量统计性插入聚合物主链中,会根据统计含量精细调节微观和宏观性质。具有相同螺旋烯负载量的对映体纯聚合物与外消旋聚合物的微观性质保持相似。相反,宏观性质,更有趣的是两种对映体形式之间的宏观性质,会根据统计含量而改变。一旦整合到太阳能电池器件中,这些手性CPs以对映体纯形式比以外消旋形式表现出更好的性能。

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