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首页> 外文期刊>Organic Electronics >Effects of the incorporation of an additional pyrrolo[3,4-c]pyrrole-1,3-dione unit on the repeating unit of highly efficient large band gap polymers containing benzodithiophene and pyrrolo[3,4-c]pyrrole-1,3-dione derivatives
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Effects of the incorporation of an additional pyrrolo[3,4-c]pyrrole-1,3-dione unit on the repeating unit of highly efficient large band gap polymers containing benzodithiophene and pyrrolo[3,4-c]pyrrole-1,3-dione derivatives

机译:引入额外的吡咯并[3,4-c]吡咯-1,3-二酮单元对含有苯并二噻吩和吡咯并[3,4-c]吡咯-1,3的高效大带隙聚合物的重复单元的影响-二酮衍生物

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摘要

Property modulation of 2,5-dioctylpyrrolo[3,4-c]pyrrole-1,3(2H,5H)-dione (DPPD)-based high energy converting wide band gap polymers, P(BDT-TDPPDT) and P(BDTT-TDPPDT), was studied via the incorporation of an additional DPPD unit on their repeating units. A new electron acceptor (BDPPD) unit containing two DPPD units was prepared and copolymerized with the distannyl derivatives of benzodithiophene (BDT) or 2D-conjugated benzodithiophene (BDTT) to provide two new polymers, P(BDT-BDPPD) and P(BDTT-BDPPD). The optical band gaps and highest occupied molecular orbital (HOMO)/ lowest unoccupied molecular orbital (LUMO) energy levels of P(BDT-BDPPD) and P(BDTT-BDPPD) were 2.16 eV, 2.08 eV and -537 eV/-3.21 eV, -5.44 eV/-336 eV, respectively. The hole mobilities of P(BDT-BDPPD) and P(BDTT-BDPPD) were in the order of 10~(-4) cm~2V~(-1) s~(-1). The polymer solar cells (PSCs) prepared with the configuration of ITO/PEDOT:PSS/P(BDT-BDPPD) or P(BDTT-BDPPD):PC_(70)BM/Al gave maximum power conversion efficiencies (PCEs) of 2.743% and 3.63%, respectively. The insertion of a BDPPD unit instead of a TDPPDT unit on the DPPD-based polymer backbone did not affect the optical and electrochemical properties considerably. On the other hand, the new polymers, P(BDT-BDPPD) and P(BDTT-BDPPD), resulted in improved photovoltaic performances compared to the reported polymers, P(BDT-TDPPDT) and P(BDTT-TDPPDT), for the devices prepared without additives.
机译:2,5-二辛基吡咯并[3,4-c]吡咯-1,3(2H,5H)-二酮(DPPD)基高能转化宽带隙聚合物P(BDT-TDPPDT)和P(BDTT)的性能调节-TDPPDT),是通过在其重复单元上加入一个额外的DPPD单元来进行研究的。制备了包含两个DPPD单元的新电子受体(BDPPD)单元,并将其与苯并二噻吩(BDT)或2D共轭苯并二噻吩(BDTT)的二苯三醇衍生物共聚,以提供两种新的聚合物P(BDT-BDPPD)和P(BDTT- BDPPD)。 P(BDT-BDPPD)和P(BDTT-BDPPD)的光学带隙和最高占据分子轨道(HOMO)/最低未占据分子轨道(LUMO)能级分别为2.16 eV,2.08 eV和-537 eV / -3.21 eV ,分别为-5.44 eV / -336 eV。 P(BDT-BDPPD)和P(BDTT-BDPPD)的空穴迁移率约为10〜(-4)cm〜2V〜(-1)s〜(-1)。使用ITO / PEDOT:PSS / P(BDT-BDPPD)或P(BDTT-BDPPD):PC_(70)BM / Al的配置制备的聚合物太阳能电池(PSC)的最大功率转换效率(PCE)为2.743%和3.63%。在基于DPPD的聚合物主链上插入BDPPD单元而不是TDPPDT单元不会显着影响光学和电化学性能。另一方面,与报道的聚合物P(BDT-TDPPDT)和P(BDTT-TDPPDT)相比,新的聚合物P(BDT-BDPPD)和P(BDTT-BDPPD)改善了光伏性能。不含添加剂的设备。

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