Development of regio-regular poly(3-hexylthiophene) by direct arylation using Fagnou's conditions.

Itzel Argemi Cacique-Espinoza, M. Güizado-Rodríguez, Miriam Rangel-Ayala, V. Barba, J. Maldonado-Rivera
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Abstract

Semiconducting polymers are widely studied due to their applications in photovoltaic devices, the predominant conjugated polymer used in organic solar cells (OSCs) is semicrystalline poly(3-hexylthiophene) P3HT, which can be produced by easy, low-cost and environmentally friendly methods such as direct arylation polymerization (DArP) (N.S. Gobalasingham et al. 2018). Due to its solution processing, deposition on different types of substrates, even flexible, with technologies such as spin coating and roll to roll, it is a feasible option for large-scale production. In this work we present the synthesis, physicochemical characterization of a regio- regular P3HT by the direct arylation method using Fagnou conditions and its evaluation on the active layer of OSCs with bulk heterojunction architecture.
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利用 Fagnou 条件通过直接芳基化技术开发出区域规则聚(3-己基噻吩)。
半导体聚合物因其在光伏设备中的应用而被广泛研究,有机太阳能电池(OSC)中使用的主要共轭聚合物是半结晶聚(3-己基噻吩)P3HT,它可以通过直接芳基化聚合(DArP)等简单、低成本和环保的方法生产(N.S. Gobalasingham 等人,2018 年)。由于其溶液加工、在不同类型基底上沉积(甚至是柔性基底)以及旋涂和卷对卷等技术,它是大规模生产的可行选择。在这项工作中,我们介绍了在法格努条件下通过直接芳基化方法合成的规整 P3HT 及其物理化学特性,并对其在具有体异质结结构的 OSC 活性层上的应用进行了评估。
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