首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Visible and near-infrared organic photosensitizers comprising isoindigo derivatives as chromophores: synthesis, optoelectronic properties and factors limiting their efficiency in dye solar cells
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Visible and near-infrared organic photosensitizers comprising isoindigo derivatives as chromophores: synthesis, optoelectronic properties and factors limiting their efficiency in dye solar cells

机译:可见和近红外有机光敏剂,包含异吲哚衍生物作为发色团:限制染料太阳能电池效率的合成,光电性能和因素

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The development of ruthenium-free organic photosensitizers showing panchromatic absorption up to the near-infrared (NIR) region for application in dye-sensitized solar cells (DSSCs) is still scarce. Among the sensitizers with absorption beyond 700 nm and developed for DSSCs, only zinc-phthalocyanine and boron-dibenzopyrromethene-based dyes have been able to reach efficiencies as high as 6%. Here we report metal-free organic dyes based on isoindigo, thieno-isoindigo or benzo-thieno-isoindigo chromophores that absorb in the UV-visible and NIR spectral range up to 900 nm. These molecules, that exhibit purple, blue, or green hues, were used to sensitize TiO2 mesoporous electrodes in order to fabricate DSSCs with an iodide/triiodide-based electrolyte. Advanced photophysical characterizations, including charge extraction, transient photovoltage, and laser transient absorption spectroscopy experiments, combined with density functional theory modeling and computational investigations allow us to fully unravel the interfacial processes at the origin of the solar cell performances and to identify the limiting factors. A power conversion efficiency as high as 7% associated with a J(sc) close to 19 mA cm(-2) was obtained with one of the dyes, which is comparable to those of the best panchromatic organic dyes reported so far. We also demonstrate in this work that the V-oc of the solar cells is linearly correlated to the dipolar moments of the oxidized dyes, the molecules possessing larger dipoles leading to the highest V-oc values.
机译:示出全色吸收到近红外(NIR)区域中染料敏化太阳能电池(DSSC)应用程序自由钌有机光敏剂的开发仍是稀缺。中与超过700nm的吸收和用于DSSC中开发的敏化剂,仅锌酞菁和硼dibenzopyrromethene基于染料已经能够达到效率高达6%。这里,我们报告,吸收在紫外 - 可见和NIR光谱范围可达900纳米基于isoindigo,噻吩并 - isoindigo或苯并噻吩并 - isoindigo生色团不含金属的有机染料。这些分子,表现出紫色,蓝色,或绿色色调,被用于敏化的TiO 2中孔电极以制造DSSC中与碘化物/三碘化物系电解液。高级光物理表征,包括电荷取出,瞬态光电压,以及激光瞬态吸收光谱实验,用密度泛函理论建模和计算合并调查让我们充分绎在太阳能电池性能的起源界面过程,并确定了限制因素。与为J(SC)接近19毫安厘米(-2)与染料,其比得上那些最佳全色有机染料中的一个获得相关联的功率转换效率高达7%迄今报道。我们还证明在这项工作中,该太阳能电池的V-OC是线性相关的氧化染料的偶极矩,拥有更大的偶极子导致最高V-OC值的分子。

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    Univ Grenoble Alpes CNRS CEA INAC SyMMES 17 Rue Martyrs F-38000 Grenoble France;

    Barcelona Inst Sci &

    Technol Inst Chem Res Catalonia ICIQ Ave Paisos Catalans 16 Tarragona 43007 Spain;

    Barcelona Inst Sci &

    Technol Inst Chem Res Catalonia ICIQ Ave Paisos Catalans 16 Tarragona 43007 Spain;

    Univ Grenoble Alpes CNRS CEA INAC SyMMES 17 Rue Martyrs F-38000 Grenoble France;

    Univ Grenoble Alpes CNRS CEA INAC SyMMES 17 Rue Martyrs F-38000 Grenoble France;

    Univ Grenoble Alpes CNRS CEA INAC SyMMES 17 Rue Martyrs F-38000 Grenoble France;

    Barcelona Inst Sci &

    Technol Inst Chem Res Catalonia ICIQ Ave Paisos Catalans 16 Tarragona 43007 Spain;

    Barcelona Inst Sci &

    Technol Inst Chem Res Catalonia ICIQ Ave Paisos Catalans 16 Tarragona 43007 Spain;

    Univ Grenoble Alpes CNRS CEA INAC SyMMES 17 Rue Martyrs F-38000 Grenoble France;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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