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以二酮吡咯并吡咯为受体、丙二氧基噻吩或茚并二噻吩为供体的新型供体-受体型电致变色聚合物的合成与表征

Synthesis and characterization of novel donor-acceptor type electrochromic polymers containing diketopyrrolopyrrole as an acceptor and propylenedioxythiophene or indacenodithiophene as a donor.

作者信息

Cheng Xinfeng, Ju Xiuping, Du Hongmei, Zhang Yan, Zhao Jinsheng, Xie Yu

机构信息

College of Chemistry and Pharmaceutical Engineering, Nanyang Normal University Nanyang 473061 P. R. China.

Dongchang College, Liaocheng University Liaocheng 252059 P. R. China.

出版信息

RSC Adv. 2018 Jun 26;8(41):23119-23129. doi: 10.1039/c8ra03570a. eCollection 2018 Jun 21.

Abstract

A range of low band gap donor-acceptor conjugated polymers (P1-P3) with backbones composed of diketopyrrolopyrrole (DPP), propylenedioxythiophene (ProDOT) and indacenodithiophene (IDT) units were designed and synthesized using the Stille coupling reaction. The optical, electrochemical and electrochromic properties of the resultant polymers were thoroughly characterized. These polymers showed exceptional solubility in common organic solvents and displayed thermal stability at a high temperature. The optical and electrochemical measurements revealed slight variations in the maximum absorptions and oxidation peaks depending on the intrinsic D-A ratio in each polymer, and narrow band gaps lower than 1.60 eV were found for these polymers. Upon oxidation, the polymer films exhibit distinct color changes (pale violet-red to dark gray for P1, rosy brown to silver for P2, atrovirens to light grey for P3) in the VIS and NIR regions. Moreover, the electrochromic switching studies indicated that these polymers have favorable switching properties, such as rapid response speed and high optical contrast and coloration efficiency, and are outstanding candidates for electrochromic applications.

摘要

设计并合成了一系列具有由二酮吡咯并吡咯(DPP)、丙二氧基噻吩(ProDOT)和茚并二噻吩(IDT)单元组成的主链的低带隙供体-受体共轭聚合物(P1-P3),采用的是Stille偶联反应。对所得聚合物的光学、电化学和电致变色性质进行了全面表征。这些聚合物在常见有机溶剂中表现出优异的溶解性,并且在高温下具有热稳定性。光学和电化学测量表明,根据每种聚合物的固有供体-受体比例,最大吸收和氧化峰略有变化,并且发现这些聚合物的带隙窄于1.60 eV。氧化后,聚合物薄膜在可见光和近红外区域呈现出明显的颜色变化(P1从浅紫红色变为深灰色,P2从玫瑰棕色变为银色,P3从深绿色变为浅灰色)。此外,电致变色开关研究表明,这些聚合物具有良好的开关性能,如快速响应速度、高光学对比度和着色效率,是电致变色应用的优秀候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/216e/9081592/4e20d3726952/c8ra03570a-s1.jpg

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