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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Molecular engineering of push-pull chromophore for efficient bulk-heterojunction morphology in solution processed small molecule organic photovoltaics
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Molecular engineering of push-pull chromophore for efficient bulk-heterojunction morphology in solution processed small molecule organic photovoltaics

机译:推挽生色团的分子工程技术,用于溶液处理的小分子有机光伏中的高效体-异质结形态

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摘要

The synthesis and characterization of new push-pull chromophores, bisDMFA-diTh-CA, bisDMFA-diTh-MMN, and bisDMFA-diTh-MIMN from 5'-(4-(bis(9,9-dimethyl-9H-fluoren-2-yl)aniline (bisDMFA) electron donating, dithiophene bridging, and various electron withdrawing moieties, cyanoacrylic acid (CA), methylene malononitrile (MMN), and methylene indenylidene malononitrile (MIMN), were demonstrated for efficient solution processed BHJ solar cells. The photophysical properties, the hole mobilities from the space charge limitation of current (SCLC) J-V characteristics, and surface morphologies of these materials/PCBM bulk-heterojunction films were also investigated. The best power conversion efficiency of 3.66% (±0.12) with J_(sc) = 11.82 mA/cm~2, FF = 0.35, and V_(oc) = 0.90 V was observed in the BHJ film fabricated with the bisDMFA-diTh-MMN/C_(71)-PCBM composite with 3% 1-chloronaphthalene (CN), which is an efficiency ~82% and ~49% higher than before and after post-annealing without treatment of CN, respectively.
机译:5'-(4-(bis(9(9,9-dimethyl-9H-fluoren-2))的新型推挽生色团bisDMFA-diTh-CA,bisDMFA-diTh-MMN和bisDMFA-diTh-MIMN的合成与表征对高效溶液处理的BHJ太阳能电池,已证明了有赖基-苯胺基(bisDMFA)的供电子,二噻吩桥联和各种吸电子基团,氰基丙烯酸(CA),亚甲基丙二腈(MMN)和亚甲基茚基丙二腈(MIMN)。还研究了这些材料/ PCBM体异质结薄膜的光物理性质,由于电流的空间电荷限制(SCLC)的JV特性引起的空穴迁移率以及表面形貌,最佳功率转换效率为J_(3.66%(±0.12) sc)= 11.82 mA / cm〜2,FF = 0.35,V_(oc)= 0.90 V在由含3%1-氯萘的bisDMFA-diTh-MMN / C_(71)-PCBM复合材料制成的BHJ膜中观察到(CN),这比未经处理的退火后效率高出约82%和约49%。 CN,分别。

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