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首页> 外文期刊>Journal of materials science >Design and chemical engineering of carbazole-based donor small molecules for organic solar cell applications
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Design and chemical engineering of carbazole-based donor small molecules for organic solar cell applications

机译:用于有机太阳能电池的咔唑基供体小分子的设计和化学工程

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摘要

A serious of carbazole-based acceptor-donor-acceptor (A-D-A) type small molecules have been designed, synthesized and characterized for efficient bulk heterojunction organic solar cell (BHJ OSCs) applications. The synthesized molecules have an electron-rich carbazole unit acting as the electron donor (D) and an electron deficient phenylcyanovinylene unit acting as an electron acceptor to assembled A-D-A type conjugated small molecules (FHCS, NHCS, FBCS, and NBCS). The effect of chemical engineering in designed small molecules through fluorination, nitration and introducing alkyl chain has been studied in view of their optical, physio-chemical and photovoltaic properties. The NHCS and NBCS show broader absorption as compared to the FHCS and FBHS due to the strong electron withdrawing ability of the nitro groups. Interestingly, it was found that the alkyl chain did not affect the thermal and photophysical properties of these small molecules, but it has good impact on the energy level and photovoltaic properties. The FHCS and NHCS molecules showed a deep-lying HOMO energy level of − 5.21 eV, as compared to the FBCS and NBCS. NHCS and NBCS molecules showed low band gaps of 1.81 and 1.77 eV, respectively. The organic photovoltaic device fabricated with the configuration of ITO/PEDOT:PSS/donor:PC61BM/LiF/Al, exhibited the best device performance for the NBCS molecules with: the short circuit current (JSC) of 4.35 mA cm_(−2), open circuit voltage (VOC) of 0.75 V, fill factor (FF) of 30.07, and power conversion efficiency of ~ 1%.
机译:已经设计,合成和表征了严重的咔唑基受体-施主-受体(A-D-A)型小分子,以用于有效的本体异质结有机太阳能电池(BHJ OSC)应用。合成的分子具有充当电子供体(D)的富电子咔唑单元和充当组装的A-D-A型共轭小分子(FHCS,NHCS,FBCS和NBCS)的电子受体的缺乏电子的苯基氰基亚乙烯基单元。考虑到化学工程的光学,物理化学和光电性质,通过氟化,硝化和引入烷基链研究了化学工程对设计小分子的影响。与FHCS和FBHS相比,NHCS和NBCS显示出更广泛的吸收性,这是由于硝基具有强大的吸电子能力。有趣的是,发现烷基链不影响这些小分子的热和光物理性质,但是对能级和光伏性质具有良好的影响。与FBCS和NBCS相比,FHCS和NHCS分子的HOMO能级为-5.21 eV。 NHCS和NBCS分子分别显示出1.81和1.77 eV的低带隙。使用ITO / PEDOT:PSS / donor:PC61BM / LiF / Al的配置制造的有机光伏器件对NBCS分子表现出最佳的器件性能,其中:短路电流(JSC)为4.35 mA cm _(-2),开路电压(VOC)为0.75V,填充因数(FF)为30.07,功率转换效率约为1%。

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  • 来源
    《Journal of materials science》 |2018年第17期|14842-14851|共10页
  • 作者单位

    Department of Chemistry, School of Advanced Sciences, VIT University;

    Department of Physics, Bannari Amman Institute of Technology;

    Department of Physics, University of the Free State;

    Department of Physics, University of the Free State;

    Department of Chemistry, School of Advanced Sciences, VIT University,Department of Nano Science and Technology, Bharathiar University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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