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烷基链长度对用于温度依赖性形态转变的明确氟代芳基化聚噻吩的影响。

The Effect of Alkyl Chain Length on Well-Defined Fluoro-Arylated Polythiophenes for Temperature-Dependent Morphological Transitions.

作者信息

Ochiai Yuto, Higashihara Tomoya

机构信息

Department of Organic Materials Science, Yamagata University, 4-3-16 Jonan, Yonezawa, Yamagata 992-8510, Japan.

出版信息

ACS Omega. 2020 Dec 17;5(51):33461-33469. doi: 10.1021/acsomega.0c05514. eCollection 2020 Dec 29.

Abstract

Understanding the relationship between the molecular structure and morphological behaviors of well-defined semiconducting polymers is essential for developing novel conjugated building blocks and determining the origin of the functional characteristics of semiconducting polymers. Here, we provide insights into the significant temperature-dependent morphological transitions of novel well-defined polythiophene derivatives with -alkoxy-substituted fluoro-aryl side units: poly(3-(4-fluoro-3-(hexyloxy)phenyl)thiophene) (PHFPT) and poly(3-(4-fluoro-3-(dodecyloxy)phenyl)thiophene) (PDFPT). We found that these unique morphological transitions depend on the alkyl chain length of the substituted fluoro-aryl side units. In PHFPT with short alkyl chains, the thermal treatment promotes a crowded interdigitated packing structure, resulting in narrow lamellar spacings in its crystalline structure. In contrast, the long alkyl chain of PDFPT acts as a physical spacer and disturbs the crowded interdigitation. In addition, the thermal treatment induces the backbone planarization and an ordered packing morphology in PDFPT. These demonstrations provide a critical milestone for the phase transitions of semiconducting polymers with conjugated side units.

摘要

了解结构明确的半导体聚合物的分子结构与形态行为之间的关系,对于开发新型共轭结构单元以及确定半导体聚合物功能特性的起源至关重要。在此,我们深入研究了具有 - 烷氧基取代氟芳基侧基的新型结构明确的聚噻吩衍生物:聚(3 - (4 - 氟 - 3 - (己氧基)苯基)噻吩)(PHFPT)和聚(3 - (4 - 氟 - 3 - (十二烷氧基)苯基)噻吩)(PDFPT)显著的温度依赖性形态转变。我们发现,这些独特的形态转变取决于取代氟芳基侧基的烷基链长度。在具有短烷基链的PHFPT中,热处理促进了紧密的相互穿插堆积结构,导致其晶体结构中的片层间距变窄。相比之下,PDFPT的长烷基链起到物理间隔作用,扰乱了紧密的相互穿插。此外,热处理在PDFPT中诱导了主链平面化和有序堆积形态。这些论证为具有共轭侧基的半导体聚合物的相变提供了一个关键的里程碑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d82d/7774253/08f5a8ac4510/ao0c05514_0002.jpg

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