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Naphthodithiophene-Based Conjugated Polymer with Linear, Planar Backbone Conformation and Strong Intermolecular Packing for Efficient Organic Solar Cells

机译:萘二噻吩基共轭聚合物,具有线性,平面骨架构型和强分子间堆积,可用于高效有机太阳能电池

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摘要

Two donor acceptor copolymers, PBDT and PNDT, containing 4,8-bis(2-ethylhexyloxy)benzo[1,2-b:3,4-b']dithiophene (BDT) and 4,9-bis(2-ethylhexyloxy)naphtho[1,2-b:5,6-b']dithiophene (NDT), respectively, as an electron-rich unit and 5,6-difluoro-2,1,3-benzothiadiazole (2FBT) as an electron-deficient unit, were synthesized and compared. The introduction of the NDT core into the conjugated backbone was found to effectively improve both light harvesting and the charge carrier mobility by enhancing chain planarity and backbone linearity; the NDT copolymer has stronger noncovalent interactions and smaller bond angles than those of the BDT-based polymer. Moreover, the introduction of the NDT core brings about a drastic change in the molecular orientation into the face-on motif and results in polymer:PCBM blend films with well-mixed interpenetrating nanofibrillar bulk-heterojunction networks with small-scale phase separation, which produce solar cells with higher short-circuit current density and fill factor values. A conventional optimized device structure containing PNDT:PC71BM was found to exhibit a maximum solar efficiency of 6.35%, an open-circuit voltage of 0.84 V, a short-circuit current density of 11.92 mA cm(-2), and a fill factor of 63.5% with thermal annealing, which demonstrates that the NDT and DT2FBT moieties are a promising electron-donor/acceptor combination for high-performance photovoltaics.
机译:含有4,8-双(2-乙基己氧基)苯并[1,2-b:3,4-b']二噻吩(BDT)和4,9-双(2-乙基己氧基)的两种供体受体共聚物PBDT和PNDT萘并[1,2-b:5,6-b']二噻吩(NDT)作为富电子单元,而5,6-二氟-2,1,3-苯并噻二唑(2FBT)作为缺电子单元单位,进行了合成和比较。已发现将NDT核引入共轭主链可通过增强链平面性和主链线性来有效地改善光收集和电荷载流子迁移率。与基于BDT的聚合物相比,NDT共聚物具有更强的非共价相互作用和较小的键角。此外,NDT核的引入使面对面的基序中分子取向发生了巨大变化,并导致了聚合物:PCBM共混膜具有良好混合的互穿的纳米原纤维本体-异质结网络,并具有小规模的相分离,从而产生了太阳能电池具有更高的短路电流密度和填充系数值。发现包含PNDT:PC71BM的常规优化器件结构的最大太阳能效率为6.35%,开路电压为0.84 V,短路电流密度为11.92 mA cm(-2),填充因子为通过热退火获得63.5%的光,这表明NDT和DT2FBT部分是用于高性能光伏的有前途的电子供体/受体组合。

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