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Syntheses of pyrimidine-based polymers containing electron-withdrawing substituent with high open circuit voltage and applications for polymer solar cells

机译:具有高开路电压的含吸电子取代基的嘧啶基聚合物的合成及其在聚合物太阳能电池中的应用

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摘要

Polymers using new electron-deficient units, 2-pyriminecarbonitrile and 2-fluoropyrimidine, were synthesized and utilized for the photovoltaics. Donor-acceptor (D-A) types of conjugated polymers (PBDTCN, PBDTTCN, PBDTF, and PBDTTF) containing 4,8-bis(2-octyldodecyloxy)benzo[1,2-b;3,4-b]dithiophene (BDT) or 4,8-bis(5-(2-octyldodecyloxy)thiophen-2-yl)benzo[1,2-b:4,5-b]dithiophene (BDTT) as electron rich unit and 2-pyriminecarbonitrile or 2-fluoropyrimidine as electron deficient unit were synthesized. We designed pyrimidine derivatives in which strong electron-withdrawing group (CN or fluorine) was introduced to the C2 position for the generation of strong electron-deficient property. By the combination with the electron-rich unit, the pyrimidines will provide low band gap polymers with low highest occupied molecular orbital (HOMO) energy levels for higher open-circuit voltages (V-OC). For the syntheses of the polymers, the electron-rich and the electron-deficient units were combined by Stille coupling reaction with Pd(0)-catalyst. Absorption spectra of the thin films of PBDTTCN and PBDTTF with BDTT unit show shift to a longer wavelength region than PBDTCN and PBDTF with BDT unit. Four synthesized polymers provided low electrochemical bandgaps of 1.56 to 1.96 eV and deep HOMO energy levels between -5.67 and -5.14 eV. (c) 2015 The Authors. Journal of Polymer Science Part A: Polymer Chemistry Published by Wiley Periodicals, Inc.
机译:合成了使用新的缺电子单元,2-嘧啶腈和2-氟嘧啶的聚合物,并将其用于光伏发电。包含4,8-双(2-辛基十二烷基氧基)苯并[1,2-b; 3,4-b]二噻吩(BDT)的共轭聚合物的供体-受体(DA)类型(PBDTCN,PBDTTCN,PBDTF和PBDTTF)或4,8-双(5-(2-辛基十二烷基氧基)噻吩-2-基)苯并[1,2-b:4,5-b]二噻吩(BDTT)作为富电子单元,2-嘧啶腈或2-氟嘧啶合成了缺电子单元。我们设计了嘧啶衍生物,其中强吸电子基团(CN或氟)被引入C2位以产生强电子缺陷性质。通过与富电子单元的结合,嘧啶将为低带隙聚合物提供较低的最高占据分子轨道(HOMO)能级,以实现更高的开路电压(V-OC)。对于聚合物的合成,通过Stille偶联反应与Pd(0)-催化剂将富电子单元和缺电子单元结合。带有BDTT单元的PBDTTCN和PBDTTF薄膜的吸收光谱显示比带有BDT单元的PBDTCN和PBDTF移到更长的波长区域。四种合成的聚合物可提供1.56至1.96 eV的低电化学带隙,以及-5.67至-5.14 eV的深HOMO能级。 (c)2015作者。高分子科学杂志A部分:高分子化学,由Wiley Periodicals,Inc.发布

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