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A new alternating copolymer of cyclopenta2,1-b;3,4-b'dithiophene and thieno3,4-cpyrrole-4,6-dione for high performance polymer solar cells

机译:新型环戊2,1-b; 3,4-b'二噻吩与噻吩并3,4-c吡咯-4,6-二酮的交替共聚物

摘要

A series of alternating copolymers of cyclopenta[2,1-b;3,4-bub4]dithiophene (CPDT) and thieno[3,4-c]pyrrole-4,6-dione (TPD) have been prepared and characterized for polymer solar cell (PSC) applications. Different alkyl side chains, including butyl (Bu), hexyl (He), octyl (Oc), and 2-ethylhexyl (EH), are introduced to the TPD unit in order to adjust the packing of the polymer chain in the solid state, while the hexyl side chain on the CPDT unit remains unchanged to simplify discussion. The polymers in this series have a simple main chain structure and can be synthesized easily, have a narrow band gap and a broad light absorption. The different alkyl chains on the TPD unit not only significantly influence the solubility and chain packing, but also fine tune the energy levels of the polymers. The polymers with Oc or EH group have lower HOMO (highest occupied molecular orbital) and LUMO (lowest unoccupied molecular orbital) energy levels, resulting higher open circuit voltages (Voc) of the PSC devices. Power conversion efficiencies (PCEs) up to 5.5% and 6.4% are obtained from the devices of the Oc substituted polymer (PCPDTTPD-Oc) with PC61BM and PC71BM, respectively. This side chain effect on the PSC performance is related to the formation of a fine bulk heterojunction structure of polymer and PCBM domains, as observed with atomic force microscopy.
机译:制备并表征了一系列环戊五[2,1-b; 3,4-b ub4]二噻吩(CPDT)和噻吩并[3,4-c]吡咯-4,6-二酮(TPD)的交替共聚物用于聚合物太阳能电池(PSC)应用。将不同的烷基侧链(包括丁基(Bu),己基(He),辛基(Oc)和2-乙基己基(EH))引入TPD单元,以调节固态时聚合物链的堆积, CPDT单元上的己基侧链保持不变以简化讨论。该系列的聚合物具有简单的主链结构,易于合成,带隙窄,吸光率高。 TPD单元上的不同烷基链不仅显着影响溶解度和链堆积,而且还可以微调聚合物的能级。具有Oc或EH基团的聚合物具有较低的HOMO(最高占据分子轨道)和LUMO(最低未占据分子轨道)能级,从而导致PSC器件的开路电压(Voc)更高。从带有PC61BM和PC71BM的Oc取代聚合物(PCPDTTPD-Oc)的设备分别获得高达5.5%和6.4%的功率转换效率(PCE)。如原子力显微镜观察到的那样,这种对PSC性能的侧链效应与聚合物和PCBM域的精细本体异质结结构的形成有关。

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