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Solar cells based on semi - random P3HT analogues containing dithienopyrrole: influence of incorporating a strong donor

机译:太阳能电池基于含有二噻吩的半随机P3HT类似物:掺入强供体的影响

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Novel semi - random poly(3 - hexylthiophene) (P3HT) based polymers P3HTT - DTP, P3HTT - BTD - DTP, P3HTT - TP - DTP and P3HTT - DPP - DTP containing the strong donor dithie- nopyrrole (DTP) as well as different acceptors (benzothiadiazole (BTD), thienopyrazine (TP) or diketopyrrolopyrrole (DPP)) were synthesized by Stille copolymerization and their optical, electrochemical, charge transport, and photovoltaic properties were investigated. All polymers (except for the all donor polymer P3HTT-DTP) show considerably broadened absorption compared to P3HT due to the donor-acceptor effect and their multichromophoric nature. The introduction of the strong donor DTP leads to increased HOMO energies and thus decreased open-circuit voltage (Voc) (compared to previously published semi-random polymers) as well as an amorphous character of P3HTT-DTP, P3HTT-BTD-DTP and P3HTT-TP-BTD resulting in low hole mobilities and moderate solar cell efficiencies (0.18% to 0.36%). The exception is P3HTT-DPP-DTP, which is semi-crystalline and has a high hole mobility of 1.4 x 10-4 cm2 V-1 s-1 comparable to P3HT, as well as increased photocurrent (10.7 mA/cm2) due to broad and uniform photoresponse up to 850 nm leading to a promising non-optimized device efficiency of 2.83%.
机译:新型半随机聚(3 - 己基噻吩)(P3HT)聚合物P3HTT - DTP,P3HTT - BTD - DTP,P3HTT - TP - DTP和P3HTT - DPP - DTP,含有强力供体Dith-Nopyrole(DTP)以及不同的DTP通过STILE共聚合成了受护者(苯并噻唑(BTD),噻吩吡嗪(TP)或二酮吡咯(DPP)),并研究了光学,电化学,电荷输送和光伏性能。所有聚合物(除了所有供体聚合物P3HTT-DTP)外,与P3HT相比,与供体 - 受体效应和它们的多体面性质相比,与P3HT相比显示出相当大的吸收。强大的供体DTP的引入导致同型能量增加,从而降低开路电压(VOC)(与先前公布的半无规聚合物相比)以及P3HTT-DTP,P3HTT-BTD-DTP和P3HTT的无定形特性-TP-BTD导致孔迁移率低,太阳能细胞效率(0.18%至0.36%)。例外是P3HTT-DPP-DTP,其是半结晶的,并且具有与P3HT相当的1.4×10-4cm 2的高空穴迁移率,以及由于(10.7mA / cm2)增加而增加的光电流(10.7mA / cm2)。宽泛均匀的光孔响应高达850nm,导致有前途的非优化设备效率为2.83%。

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