首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Small-molecular iridium complex based organic solar cells with improved photovoltaic performance through device optimization
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Small-molecular iridium complex based organic solar cells with improved photovoltaic performance through device optimization

机译:基于小分子铱配络合物的有机太阳能电池,通过装置优化改善光伏性能

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Small-molecular iridium complex based organic solar cells (OSCs) show inferior power conversion efficiencies (PCEs) to those of pure organic/polymer analogues. To further improve the performance of such OSCs, we reported a bilayer device structure, which was fabricated by sequentially spin-coating a p-type polymer semiconductor (poly[4,4 '-bis(2-butyloctoxycarbonyl-[2,2 '-bithiophene]-5,5-diyl)-alt-(2,2 ' bithiophene-5,5 ' diyl)]) (PDCBT) layer and a bulk-heterojunction (BHJ) layer with the cyclometalated Ir complex (TBzIr) as the donor and PC71BM as the acceptor. Compared to the original TBzIr:PC71BM BHJ device, the bilayer PDCBT/TBzIr:PC71BM structure exhibited an identical high open circuit voltage of 0.92 V, and increased both short circuit current from 9.25 to 11.14 mA cm(-2) and fill factor from 0.46 to 0.61. The p-type PDCBT layer was inserted to afford increased light absorption, assist the upper BHJ blends to form optimized morphologies, and provide supplementary donor-acceptor interfaces to facilitate exciton dissociation. Therefore, the PCE could be significantly improved from 3.91% for TBzIr:PC71BM to 6.17% for PDCBT/TBzIr:PC71BM. To the best of our knowledge, this is the highest efficiency ever reported for small-molecular Ir complex based organic solar cells.
机译:基于小分子铱络合物的有机太阳能电池(OSCs)显示纯有机/聚合物类似物的较差的功率转换效率(PCE)。为了进一步提高这种OSC的性能,我们报道了一种双层器件结构,其通过顺序旋转p型聚合物半导体(Poly [4,4'-bis(2-丁基二羰基 - [2,2' - 二噻吩] -5,5-二基) - (2,2'二噻吩-5,5,5'二基)])(PDCBT)层和具有环状IR复合物(TBZIR)的散装 - 异质结(BHJ)层作为捐赠者和PC71BM作为受体。与原始TBZIR:PC71BM BHJ器件相比,双层PDCBT / TBZIR:PC71BM结构表现出0.92V的相同高开路电压,并增加9.25至11.14 mA cm(-2)的短路电流,并填充0.46的填充因子。到0.61。插入p型PDCBT层以提供增加的光吸收,帮助上部BHJ混合物形成优化的形态,并提供补充供体 - 受体界面以促进激子解离。因此,PDCBT / TBZIR:PC71BM的PC71BM至6.17%,PCE可以显着提高PCE。据我们所知,这是对小分子红外复合物的有机太阳能电池进行的最高效率。

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