首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Simultaneously improving the photovoltaic parameters of organic solar cells via isomerization of benzo[b]benzo[4,5]thieno[2,3-d]thiophene-based octacyclic non-fullerene acceptors
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Simultaneously improving the photovoltaic parameters of organic solar cells via isomerization of benzo[b]benzo[4,5]thieno[2,3-d]thiophene-based octacyclic non-fullerene acceptors

机译:同时通过苯并的异构化改善有机太阳能电池的光伏参数[B]苯并[4,5]噻吩[2,3-D]噻吩基六环非富勒烯受体

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摘要

Fused-ring electron acceptors (FREAs) have attracted immense interest owing to their ability for facile structural modification and good thermal and optical characteristics. Among these acceptors, isomerized building blocks originating from multiple reaction sites affect the electronic structures, morphological properties and resulting photovoltaic performance, but have rarely been studied. Herein, three isomeric FREAs, Z1-aa, Z1-ab, and Z1-bb, were synthesized using different reaction sites of benzo[b]benzo[4,5]thieno[2,3-d]thiophene (BTBT)-based fused-ring cores and were used in organic solar cells (OSCs). As compared to Z1-aa and Z1-ab, Z1-bb exhibited red-shifted absorption and a higher maximum molar extinction coefficient. When blended with PM6, Z1-bb-based OSCs exhibited more balanced charge transport compared to those with the PM6:Z1-aa and PM6:Z1-ab blend films, which favored higher short-circuit current density (J(sc)) and fill factor (FF). As a result, the OSC devices based on Z1-bb exhibited a power conversion efficiency (PCE) of 12.66% with V-oc = 0.98 V, J(sc) = 18.52 mA cm(-2), and FF = 70.05%, respectively, which are significantly higher than the values recorded for the Z1-ab-based (PCE of 9.60%) and Z1-aa-based (PCE of 4.56%) devices. These results indicate that the isomerization of a fused-ring core originating from a special reaction site could be a promising approach to achieve high-performance OSCs with high J(sc), V-oc, and FF.
机译:由于它们的体面的结构改性和良好的热和光学特性,融合环电子受体(FREAS)引起了巨大的兴趣。在这些受护者中,源自多重反应部位的异构化结构块影响电子结构,形态学性能并产生光伏性能,但很少已经研究过。在此,使用苯并[B]苯并[4,5]噻吩(BTBT)的不同反应位点合成三种异构烟雾,Z1-AA,Z1-AB和Z1-BB [4,5]噻吩(BTBT)融合环核心,用于有机太阳能电池(OSC)。与Z1-AA和Z1-AB相比,Z1-BB表现出红移吸收和更高的最大摩尔消光系数。与PM6混合时,与PM6:Z1-AA和PM6:Z1-AB混合膜的Z1-BB为基础的OSC表现出更平衡的电荷传输,这有利于更高的短路电流密度(J(SC))和填充因子(FF)。结果,基于Z1-BB的OSC器件表现出12.66%的功率转换效率(PCE),V-oc = 0.98 V,J(SC)= 18.52 mA cm(-2),以及FF = 70.05%,分别显着高于Z1-AB基(PCE为9.60%)和基于Z1-AA的(PCE为4.56%)器件的值的值。这些结果表明,源自特殊反应部位的融合环核心的异构化可能是实现高j(sc),V-oc和Ff的高性能OSC的有希望的方法。

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    Xiangtan Univ Coll Chem Minist Educ Key Lab Environm Friendly Chem &

    Applicat Xiangtan 411105 Peoples R China;

    Xiangtan Univ Coll Chem Minist Educ Key Lab Environm Friendly Chem &

    Applicat Xiangtan 411105 Peoples R China;

    Xiangtan Univ Coll Chem Minist Educ Key Lab Environm Friendly Chem &

    Applicat Xiangtan 411105 Peoples R China;

    Xiangtan Univ Coll Chem Minist Educ Key Lab Environm Friendly Chem &

    Applicat Xiangtan 411105 Peoples R China;

    Xiangtan Univ Coll Chem Minist Educ Key Lab Environm Friendly Chem &

    Applicat Xiangtan 411105 Peoples R China;

    Xiangtan Univ Coll Chem Minist Educ Key Lab Environm Friendly Chem &

    Applicat Xiangtan 411105 Peoples R China;

    Xiangtan Univ Coll Chem Minist Educ Key Lab Environm Friendly Chem &

    Applicat Xiangtan 411105 Peoples R China;

    Korea Univ Coll Sci Dept Chem Anam Ro 145 Seoul 136713 South Korea;

    Korea Univ Coll Sci Dept Chem Anam Ro 145 Seoul 136713 South Korea;

    Beihang Univ Sch Chem Beijing 100191 Peoples R China;

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  • 中图分类 工程材料学;
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