首页> 外文期刊>Macromolecules >Structural Design of Benzo[1,2?b:4,5?b']dithiophene-Based 2D Conjugated Polymers with Bithienyl and Terthienyl Substituents toward Photovoltaic Applications
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Structural Design of Benzo[1,2?b:4,5?b']dithiophene-Based 2D Conjugated Polymers with Bithienyl and Terthienyl Substituents toward Photovoltaic Applications

机译:基于苯并[1,2?b:4,5?b']二噻吩基的二维共轭聚合物与噻吩基和叔噻吩基取代基的结构设计在光伏应用中的应用

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In this contribution, six conjugated polymers consisting of benzo[1,2-b:4,5-b']dithiophene?bithiophene (BDT-BT) and benzo[1,2-b:4,5- b']dithiophene?benzothiadiazle (BDT-BTD) as building blocks in the main chain were synthesized by coupling polymerization and utilized for photovoltaic applications. By directly attaching three kinds of alkylthienyl side chains to the conjugated main chain, the resulted two-dimensional configuration revealed a broader absorption range due to the ground state electron transition of their corresponding alkylthienyl units and polymer backbone. Temperature-dependent absorbance, emission spectra, and thermal annealing further verify that the shoulder band(s) were originated from the aggregated (crystalline) species of polymers. The photovoltaic properties of the donor?acceptor polymers revealed well-defined side chain geometries, physical, and electronic structures and showed the highest power conversion efficiency of 4.25% among polymer solar cells based on two-dimensional (2- D) bithienyl- or terthienyl-substituted benzodithiophene.
机译:在此贡献中,由苯并[1,2-b:4,5-b']二噻吩?联噻吩(BDT-BT)和苯并[1,2-b:4,5-b']二噻吩?构成的六种共轭聚合物。通过偶联聚合合成作为主链结构单元的苯并噻二唑(BDT-BTD),并将其用于光伏应用。通过将三种烷基噻吩基侧链直接连接到共轭主链上,由于其相应的烷基噻吩基单元和聚合物主链的基态电子跃迁,所得到的二维结构显示了更宽的吸收范围。与温度有关的吸收率,发射光谱和热退火进一步验证了肩带是由聚合物的聚集(结晶)物种产生的。供体-受体聚合物的光伏性质显示出定义明确的侧链几何结构,物理结构和电子结构,在基于二维(2-D)苯二烯基或叔噻吩基的聚合物太阳能电池中,其最高功率转换效率为4.25%取代的苯并二噻吩。

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