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首页> 外文期刊>New Journal of Chemistry >Synthesis of a dibenzo-BODIPY-incorporating phenothiazine dye as a panchromatic sensitizer for dye-sensitized solar cells
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Synthesis of a dibenzo-BODIPY-incorporating phenothiazine dye as a panchromatic sensitizer for dye-sensitized solar cells

机译:用染料敏化太阳能电池的染色致敏剂合成二苯甲酸-Bibipy掺入吩噻嗪染料

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摘要

For the application of metal-free organic sensitizers in dye-sensitized solar cells (DSSCs), a boron dibenzopyrromethene (dibenzo-BODIPY)-conjugated phenothiazine dye with cyanoacrylic acid as an anchoring group 1 was synthesized and characterized. It showed an intense absorption band at 638 nm as the lambda(max) value and a molar extinction coefficient (epsilon) of 1.23x10(5) M-1 cm(-1). In addition, a relatively small but significant peak was observed at 440 nm (epsilon = 1.80x10(4) M-1 cm(-1)). Such panchromatic features allowed the fabrication of a DSSC with an excellent short-circuit current density (J(sc)) of 19.09 mA cm(-2) under 100 mW cm(-2) AM1.5G simulated light. The corresponding external quantum efficiency (EQE) indicated that the cell converted the light to a photocurrent in a wide wavelength region up to 780 nm, resulting in a power conversion efficiency (PCE; eta) of 7.69% in an I-/I-3(-) redox couple electrolyte without the addition of any coadsorbents. When compared to the control cell loaded with a cycanoacrylic acid-appended phenothiazine 2, the PCE value of the 1-loaded cell was 1.5 times larger than that of the control cell because of significant enhancements in both J(sc) and open-circuit voltage (V-oc). Electrochemical impedance analysis (EIS) suggested attenuation of the charge recombination when using 1 as a sensitizer. In this way, the 1-loaded cell showed relatively good DSSC properties comparable to those of the cell with N719 (eta = 7.15%) under the same conditions.
机译:为了在染料敏化太阳能电池(DSSCs)中的无金属有机敏化剂中,合成并表征含有氰基丙烯酸的硼二苯并吡咯甲烯(二苯甲酰-BIDIPY)与氰基丙烯酸的氰皮脂染料。它显示出638nm的强吸收带,作为λ(最大)值和1.23×10(5)m-1cm(-1)的摩尔消光系数(ε)。另外,在440nm(epsilon = 1.80x10(4)m-1cm(-1))中观察到相对较小但显着的峰。这种平面特征允许在100mW cm(-2)am1.5g模拟光下的19.09 mA cm(-2)的优异短路电流密度(j(sc))的优异短路电流密度(j(sc))制造。相应的外部量子效率(EQE)表明该电池在宽波长区域中将光转换为高达780nm的宽波长区域,导致I-/ I-3中的功率转换效率(PCE; ETA)为7.69% ( - )氧化还原耦合电解质而不添加任何共脂。与用氯丙烯酰基酸所在的吩噻嗪2负载的控制电池相比,由于J(SC)和开路电压的显着增强,1负载电池的PCE值比控制电池大的1.5倍(V-OC)。电化学阻抗分析(EIS)建议使用1作为敏化剂时电荷重组的衰减。以这种方式,1负载细胞显示与在相同条件下的N719(ETA = 7.15%)的细胞相当的相对良好的DSSC性质。

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  • 来源
    《New Journal of Chemistry》 |2017年第18期|共9页
  • 作者单位

    Ege Univ Solar Energy Inst TR-35100 Bornava Izmir Turkey;

    Tokyo Metropolitan Univ Grad Sch Urban Environm Sci 1-1 Minami Ohsawa Hachioji Tokyo 1920397 Japan;

    Tokyo Metropolitan Univ Grad Sch Urban Environm Sci 1-1 Minami Ohsawa Hachioji Tokyo 1920397 Japan;

    Tokyo Metropolitan Univ Grad Sch Urban Environm Sci 1-1 Minami Ohsawa Hachioji Tokyo 1920397 Japan;

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  • 正文语种 eng
  • 中图分类 化学;
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