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Design and synthesis of N-substituted perylene diimide based low band gap polymers for organic solar cell applications

机译:用于有机太阳能电池应用的基于N-取代的Perylene二酰亚胺的低带隙聚合物的设计与合成

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摘要

In this study, we report on the synthesis and device studies of a series of new copolymers containing N-substituted perylene dimide and dioctylfluorene units as part of the main backbone. A facile synthetic approach avoiding non-selective bromination was used to synthesize the monomer M1 by the reaction of perylene-3,4,9,10-tetracarboxylic dianhydride with 2-amino-7-bromo-9,9-dioctylfluorene. The copolymers P1 and P2 were synthesized by Suzuki polycondensation of M1 with 2,2-(9,9-dioctyl-9H-fluoren-2,7-diyl)bis(4,4,5,5-tetramethyl-1,3,2-dioxaborolane) M2 and 9-(heptadecan-9-yl)-2,7-bis(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)-9H-carbazole M3, respectively. The copolymer P3 was synthesized by direct arylation polymerization of M1 with 4,7-bis(4-octylthiophen-2-yl)benzo[c]-1,2,5-thiadiazole M4. All the copolymers showed thermal stability greater than 380 degrees C as evidenced from thermogravimetric analysis. The copolymers exhibited a narrow optical band gap (1.80-2.08 eV) with their UV-visible absorption spectra extending up to the NIR region and they are found to be suitable for use in OSC applications. The molecular weights of the polymers P1-P3 were found to be in the range of 10.68 to 16.02 kg mol(-1) as measured from GPC analysis. The surface morphology of the active layers based on P1/P2/P3:P3HT blend films was investigated by AFM and the rms values from height images range from 0.65 to 2.90 nm. The polymers were blended with P3HT to fabricate BHJ solar cells in three different weight ratios i.e. 1:1, 1.5:1 and 2:1 and the best power conversion efficiency was observed for the binary film of P3:P3HT blend device in a 1:1 weight ratio which reached up to 1.96% with a V-oc of 0.55 V, J(sc) of 10.12 mA cm(-2) and FF of 34.63% which is among the highest reported for BHJ solar cells with N-substituted PDI based acceptors.
机译:在本研究中,我们报告了一系列含有N-取代的前丙烯倍差和二辛基氟烯单元的一系列新共聚物的合成和装置研究,作为主要骨架的一部分。避免非选择性溴化的容易合成方法通过珀苯-3,4,9,10-10-四羧酸二酐与2-氨基-7-溴-9,9-二辛基氟烯的反应合成单体M1。通过2,2-(9,9-二辛基-9H-氟-2,7-二基)(4,4,5,5-四甲基-1,3,合成所述共聚物P1和P2的M1缩聚合成。 2-二氧硼戊环)M2和9-(十七烷-9-基)-2,7-双(4,4,5,5-四甲基-1,3,2-二氧硼杂环戊烷-2-基)-9H-咔唑M3,分别。通过用4,7-双(4-辛基噻吩-2-基)苯并[C] -1,2,5-噻二唑M4,通过直接芳基化聚合合成共聚物P3。所有共聚物都显示出热稳定性大于380℃,可以从热重分析中证明。共聚物表现出窄光带隙(1.80-2.08eV),其UV可见吸收光谱延伸到NIR区域,并且发现它们适用于OSC应用。聚合物P1-P3的分子量被发现为从GPC分析测量的10.68至16.02kg摩尔(-1)的范围内。基于P1 / P2 / p3的活性层的表面形态由AFM研究了P3HT共混膜,高度图像的RMS值范围为0.65至2.90nm。将聚合物与P3HT共混以制造BHJ太阳能电池在三个不同的重量比,即1:1,1.5:1和2:1和观察到P3的二进制膜最佳的功率转换效率:在一个1 P3HT混合设备: 1重量比率高达1.96%,V-oc为0.55 V,j(sc)为10.12 mA cm(-2),ff为34.63%,这是具有N-取代的PDI的BHJ太阳能电池的最高报道基于的受体。

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  • 来源
    《RSC Advances》 |2018年第53期|共13页
  • 作者单位

    Indian Inst Technol Delhi Dept Mat Sci &

    Engn New Delhi 110016 India;

    Indian Inst Technol Delhi Ctr Energy Studies Photovolta Lab New Delhi 110016 India;

    Indian Inst Technol Delhi Ctr Energy Studies Photovolta Lab New Delhi 110016 India;

    Indian Inst Technol Delhi Dept Mat Sci &

    Engn New Delhi 110016 India;

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  • 正文语种 eng
  • 中图分类 化学;
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