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Narrow-Band-Gap Conjugated Polymers Based on 2,7-Dioctyl- Substituted Dibenzo[a,c]phenazine Derivatives for Polymer Solar Cells

机译:基于2,7-二辛基取代的二苯并[a,c]吩嗪衍生物的窄带隙共轭聚合物,用于聚合物太阳能电池

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摘要

A series of new 2,7-dioctyl-substituted dibenzo[a,c]phenazine (BPz) derivatives were designed and synthesized as electron-deficient units, which were copolymerized with an electron-rich indacenodithiophene (IDT) to construct narrow-bandgap copolymers PIDT?OHBPz, PIDT?OFBPz, and PIDT?OBPQ via Stille polycondensation. The 2,7-dioctyl substituents enhanced solubility and offered a new approach for developing various BPz derivatives. All copolymers showed high hole mobilities above 0.01 cm~2 V~(?1) s~(?1) as measured by field effect transistors. The best performance of polymer solar cell was achieved based on PIDT?OFBPz with inverted device structure of ITO/ZnO/PFN/polymer:PC_(61)BM/MoO_3/Al, which showed an opencircuit voltage (V_(oc)) of 0.97 V, a short-circuit current (J_(sc)) of 8.96 mA/cm~2, and a fill factor (FF) of 58.99%, leading to a high power conversion efficiency (PCE) of 5.13%. These results indicate that 2,7-alkyl-substituted BPz derivatives can be used as an excellent electron-deficient building block for the construction of high-performance organic electronic materials.
机译:设计并合成了一系列新的2,7-二辛基取代的二苯并[a,c]吩嗪(BPz)衍生物,将其作为缺电子单元,与富含电子的茚并二噻吩(IDT)共聚,以构建窄带隙共聚物PIDT?OHBPz,PITT?OFBPz和PIDT?OBPQ通过Stille缩聚反应。 2,7-二辛基取代基提高了溶解度,为开发各种BPz衍生物提供了新的方法。通过场效应晶体管测量,所有共聚物均显示出高于0.01cm 2 V 2(-1)s 1(-1)的高空穴迁移率。基于PIDT?OFBPz并具有ITO / ZnO / PFN /聚合物:PC_(61)BM / MoO_3 / Al的倒置器件结构的聚合物太阳能电池可获得最佳性能,其开路电压(V_(oc))为0.97 V,8.96 mA / cm〜2的短路电流(J_(sc))和58.99%的填充系数(FF),导致5.13%的高功率转换效率(PCE)。这些结果表明,2,7-烷基取代的BPz衍生物可以用作构建高性能有机电子材料的极好的电子缺陷构建基块。

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