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Effective D-A-D type chromophore of fumaronitrile-core and terminal alkylated bithiophene for solution-processed small molecule organic solar cells

机译:富马腈核和末端烷基化联噻吩的有效D-A-D型发色团用于溶液处理的小分子有机太阳能电池

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摘要

A new and novel organic π-conjugated chromophore (named as RCNR) based on fumaronitrile-core acceptor and terminal alkylated bithiophene was designed, synthesized and utilized as an electron-donor material for the solution-processed fabrication of bulk-heterojunction (BHJ) small molecule organic solar cells (SMOSCs). The synthesized organic chromophore exhibited a broad absorption peak near green region and strong emission peak due to the presence of strong electron-withdrawing nature of two nitrile (–CN) groups of fumaronitrile acceptor. The highest occupied molecular orbital (HOMO) energy level of –5.82 eV and the lowest unoccupied molecular orbital (LUMO) energy level of –3.54 eV were estimated for RCNR due to the strong electron-accepting tendency of –CN groups. The fabricated SMOSC devices with RCNR:PC60BM (1:3, w/w) active layer exhibited the reasonable power conversion efficiency (PCE) of ~2.69% with high short-circuit current density (JSC) of ~9.68 mA/cm2 and open circuit voltage (VOC) of ~0.79 V.
机译:设计,合成了一种新型的基于富马腈核受体和末端烷基化联噻吩的有机π共轭发色团(RCNR),并用作电子给体材料,用于溶液加工制备体积大的异质结(BHJ)。分子有机太阳能电池(SMOSC)。合成的有机发色团在富马腈受体的两个腈基(-CN)基团具有强的吸电子性,因此在绿色区域附近表现出较宽的吸收峰和较强的发射峰。由于–CN基团的强电子接受趋势,估计RCNR的最高占据分子轨道(HOMO)能级为–5.82 eV,最低未占据分子轨道(LUMO)能级为–3.54 eV。具有RCNR:PC60BM(1:3,w / w)有源层的SMOSC器件具有〜2.69%的合理功率转换效率(PCE),且〜9.68 mA / cm 2 ,开路电压(VOC)为〜0.79V。

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