首页> 外文期刊>Advanced energy materials >Fully Plastic Dye Solar Cell Devices by Low-Temperature UV-Irradiation of both the Mesoporous TiO_2 Photo- and Platinized Counter-Electrodes
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Fully Plastic Dye Solar Cell Devices by Low-Temperature UV-Irradiation of both the Mesoporous TiO_2 Photo- and Platinized Counter-Electrodes

机译:低温UV辐照介孔TiO_2光电极和镀铂对电极的全塑料染料太阳能电池装置

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摘要

The application of UV irradiation processes are successfully proposed for the first time in the fabrication of both of the two plastic electrodes in flexible dye solar cells (DSCs) and modules. For the realization of the photo-electrode, a customized TiO_2 paste formulation and UV processing method was developed which yields 134% (48%) performance enhancement with respect to the same (binder-free) paste treated at 120 ℃. UV treatment induces both complete removal of organic media and more efficient charge collection. Significantly, highly catalytic platinized flexible counter-electrodes are also obtained via UV photo-induced reduction of screen-printed platinum precursor pastes based on hexachloroplatinic acid. Using both UV-processed electrodes, a fully plastic DSC is fabricated with a conversion efficiency of 4.3% under 1 Sun (semitransparent) and 5.3% under 0.2 Sun (opaque). Performance is within 10% of the efficiency of a glass-based DSC prepared with the same materials but with conventional high temperature processes. The material formulations and processes are simple, and easily up-scaled over large areas, even directly and simultaneously applicable to-the preparation of both the photo-and counter-electrode on the same substrate which enabled us to demonstrate the first module on plastic realized with a W series interconnection.
机译:在柔性染料太阳能电池(DSC)和模块中的两个塑料电极的制造中,首次成功提出了紫外线照射工艺的应用。为了实现光电极,开发了定制的TiO_2浆料配方和UV处理方法,相对于在120℃下处理的相同(无粘合剂)浆料,其性能提高了134%(48%)。紫外线处理既可以完全去除有机介质,又可以更有效地收集电荷。重要的是,还可以通过紫外光诱导还原基于六氯铂酸的丝网印刷铂前体浆料,获得高度催化的镀铂柔性对电极。使用两个经过紫外线处理的电极,可以制成全塑料DSC,在1个太阳(半透明)下,转换效率为4.3%,在0.2个太阳(不透明)下,转换效率为5.3%。性能是使用相同材料但使用常规高温工艺制备的玻璃基DSC效率的10%以内。材料的配方和工艺非常简单,并且可以轻松地在大面积上放大,甚至可以直接和同时适用于在同一基板上制备光电极和对电极,这使我们能够展示在塑料上实现的第一个模块与W系列互连。

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  • 来源
    《Advanced energy materials》 |2013年第10期|1292-1298|共7页
  • 作者单位

    C.H.O.S.E. (Centre for Hybrid and Organic Solar Energy) Department of Electronic Engineering University of Rome - Tor Vergata via del Politecnico 1, 00133, Rome, Italy;

    C.H.O.S.E. (Centre for Hybrid and Organic Solar Energy) Department of Electronic Engineering University of Rome - Tor Vergata via del Politecnico 1, 00133, Rome, Italy;

    Department of Applied Physics Eindhoven University of Technology P.O. Box 513, 5600 MB Eindhoven, The Netherlands;

    Department of Applied Physics Eindhoven University of Technology P.O. Box 513, 5600 MB Eindhoven, The Netherlands;

    Department of Applied Physics Eindhoven University of Technology P.O. Box 513, 5600 MB Eindhoven, The Netherlands;

    Department of Chemical Science and Technologies University of Rome - Tor Vergata Via delta Ricerca Scientifica 00133, Rome, Italy;

    C.H.O.S.E. (Centre for Hybrid and Organic Solar Energy) Department of Electronic Engineering University of Rome - Tor Vergata via del Politecnico 1, 00133, Rome, Italy;

    C.H.O.S.E. (Centre for Hybrid and Organic Solar Energy) Department of Electronic Engineering University of Rome - Tor Vergata via del Politecnico 1, 00133, Rome, Italy;

    C.H.O.S.E. (Centre for Hybrid and Organic Solar Energy) Department of Electronic Engineering University of Rome - Tor Vergata via del Politecnico 1, 00133, Rome, Italy;

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