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Design and synthesis of new low band gap organic semiconductors for photovoltaic applications

机译:用于光伏应用的新型低带隙有机半导体的设计与合成

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Donor-acceptor (D-A) conjugated polymers have attracted a good deal of attention in recent years. In D-A systems, the introduction of electron withdrawing groups reduces E_g by lowering the LUMO levels whereas, the introduction of electron donating groups reduces E_g by raising the HOMO levels. Also, conjugated polymers with desired HOMO and LUMO energy levels could be obtained by the proper selection of donor and acceptor units. Because of this reason, D-A conjugated polymers are emerging as promising materials particularly for polymer light emitting diodes (PLEDs) and polymer solar cells (PSCs). We report the design and synthesis of four new narrow band gap donor-acceptor (D-A) conjugated polymers, PTCNN, PTCNF, PTCNV and PTCNO, containing electron donating 3,4-didodecyloxythiophene and electron accepting cyanovinylene units. The effects of further addition of electron donating and electron withdrawing groups to the repeating unit of a D-A conjugated polymer (PTCNN) on its optical and electrochemical properties are discussed. The studies revealed that the nature of D and A units as well as the extent of alternate D-A structure influences the optical and the electrochemical properties of the polymers. All the polymers are thermally stable up to a temperature of 300 °C under nitrogen atmosphere. The electrochemical studies revealed that the polymers possess low-lying HOMO energy levels and low-lying LUMO energy levels. In the UV-Vis absorption study, the polymer films displayed broad absorption in the wavelength region of 400-700 nm. The polymers exhibited low optical band gaps in the range 1.70 -1.77 eV.
机译:近年来,供体-受体(D-A)共轭聚合物引起了广泛的关注。在D-A系统中,吸电子基团的引入通过降低LUMO能级来降低E_g,而给电子基团的引入通过提高HOMO能级来降低E_g。此外,具有所需HOMO和LUMO能级的共轭聚合物可以通过的供体和受体单元的适当选择而获得。由于这个原因,D-A共轭聚合物正在成为有前途的材料,特别是用于聚合物发光二极管(PLED)和聚合物太阳能电池(PSC)的材料。我们报告了四个新的窄带隙供体-受体(D-A)共轭聚合物PTCNN,PTCNF,PTCNV和PTCNO的设计和合成,其中包含给电子的3,4-二十二烷基氧基噻吩和电子接受的氰基亚乙烯基单元。讨论了向D-A共轭聚合物(PTCNN)的重复单元中进一步添加供电子基团和吸电子基团对其光学和电化学性能的影响。研究表明,D和A单元的性质以及交替的D-A结构的程度会影响聚合物的光学和电化学性质。在氮气氛下,所有聚合物在高达300°C的温度下都具有热稳定性。电化学研究表明,这些聚合物具有较低的HOMO能级和较低的LUMO能级。在UV-Vis吸收研究中,聚合物薄膜在400-700 nm的波长范围内显示出广泛的吸收。所述聚合物表现出在1.70-1.77eV范围内的低光学带隙。

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