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用于光伏应用的三氟甲基化喹喔啉基聚合物的合成

Synthesis of Trifluoromethylated Quinoxaline-Based Polymers for Photovoltaic Applications.

作者信息

Putri Sella Kurnia, Kim Yun Hwan, Whang Dong Ryeol, Kim Joo Hyun, Chang Dong Wook

机构信息

Department of Industrial Chemistry, Pukyong National University, Pusan, 48547, Republic of Korea.

Department of Polymer Engineering, Pukyong National University, Pusan, 48547, Republic of Korea.

出版信息

Macromol Rapid Commun. 2018 Jul 4:e1800260. doi: 10.1002/marc.201800260.

Abstract

A series of quinoxaline-based conjugated polymers, in which the electron-donating benzodithiophene (BDT) unit is linked to the electron-accepting 6,7-difluorinated quinoxaline (DFQ) derivatives by a thiophene bridge, is synthesized. To investigate their effects on the intrinsic properties of polymers, strong electron-withdrawing trifluoromethyl (CF ) groups were incorporated into the meta-position of the phenyl ring at the 2,3-positions of the DFQ unit of the reference polymer, labelled PEhB-FQx, to yield the target polymer PEhB-FQxCF3. In addition, the 2-ethylhexyloxy substituents on the BDT donor in PEhB-FQxCF3 are changed to the more planar 2-ethylhexyl thiophene units to produce another target polymer PThB-FQxCF3. Owing to the significant contributions of the CF moiety, PEhB-FQxCF3 exhibits quite discernible optical and electrochemical properties along with significant enhancement in photovoltaic performances compared to the reference polymer PEhB-FQx. Furthermore, the incorporation of the alkylthienyl side chains on the BDT moiety confers on the resultant PThB-FQxCF3 to possess the maximum power conversion efficiency of 7.26% with an open circuit voltage of 0.88 V, short-circuit current density of 12.20 mA cm , and fill factor of 67.80%.

摘要

合成了一系列基于喹喔啉的共轭聚合物,其中供电子的苯并二噻吩(BDT)单元通过噻吩桥与吸电子的6,7-二氟喹喔啉(DFQ)衍生物相连。为了研究它们对聚合物固有性质的影响,将强吸电子的三氟甲基(CF₃)基团引入到参考聚合物PEhB-FQx的DFQ单元2,3位苯环的间位,得到目标聚合物PEhB-FQxCF₃。此外,将PEhB-FQxCF₃中BDT供体上的2-乙基己氧基取代基换成更平面的2-乙基己基噻吩单元,以制备另一种目标聚合物PThB-FQxCF₃。由于CF₃部分的显著贡献,与参考聚合物PEhB-FQx相比,PEhB-FQxCF₃表现出相当明显的光学和电化学性质,同时光伏性能有显著提高。此外,在BDT部分引入烷基噻吩侧链使所得的PThB-FQxCF₃具有7.26%的最大功率转换效率,开路电压为0.88 V,短路电流密度为12.20 mA/cm²,填充因子为67.80%。

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