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Hot-compression: An Effective Postdeposition Treatment For Electrophoretically Deposited Dye-sensitized Solar Cell

机译:热压缩:用于电泳沉积染料敏化太阳能电池的有效的后沉积处理

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In this investigation, low-cost commercial Degussa P25 TiO_2-based dye-sensitized solar cells (DSCs) have been fabricated using electrophoretic deposition (EPD) along with a new post-deposition treatment named hot-compression. We have optimized the number of deposition layers and found that a four layer electrophoretic deposition gives a homogeneous crack-free photoelectrode. Multilayer deposition minimizes the cracks; while to ensure the uniformity of the deposited film's surface, we introduce a four-layer four-side electrophoretic deposition (4L4SEPD) technique. Then the electrophorically deposited substrates have been post-treated by a hot-compression followed by sintering. Performance of the DSCs fabricated by this way have been compared with the conventional post-treated (sintered, compressed at room temperature) DSCs. About 16%, 39%, and 70% enhancement in power conversion efficiency has been achieved in DSC devices with compression, hot-compression, and hot-compression followed by sintering, respectively as compared to the sintered device. Several characterizations including scanning electron microscopy (SEM), photocurrent-voltage (I-V) measurement, incident photon-to-electron conversion efficiency, transmittance, and electrochemical impedance spectra (EIS) have been employed to find the nature of improvement with the post-treatments. In detail investigations reveal that hot-compression improves the surface morphology, transmittance, and electron transport which in turn lead to a substantial enhancement of photocurrent and power conversion efficiency. Under an optimized hot-compression (40 MPa compression at 70 °C heating) followed by sintering conditions, the overall power conversion efficiency of a device with P25 TiO_2 photoanode has reached to 4.98% under illumination of AM 1.5 G (100 mW ? cm~(-2)). This work demonstrates that 4L4SEPD combined with hot-compression post-treatment provides a way to fabricate highly efficiency DSCs.
机译:在该研究中,使用电泳沉积(EPD)以及新的沉积后处理,使用电泳沉积(EPD)制造了低成本的商业Degussa P25 TiO_2染料敏化太阳能电池(DSCS)。我们已经优化了沉积层的数量,发现四层电泳沉积提供了无均匀的无裂缝光电电极。多层沉积最小化裂缝;虽然为了确保沉积的薄膜表面的均匀性,但我们引入了四层四侧电泳沉积(4L4Sepd)技术。然后通过热压缩后,电泳沉积的基材被烧结后处理。通过这种方式制造的DSC的性能与传统的后处理(烧结,室温下)DSC进行了比较。在DSC器件中实现了大约16%,39%和70%的增强,其具有压缩,热压缩和热压缩,然后烧结,与烧结装置相比,分别烧结。几个表征包括扫描电子显微镜(SEM),光电流 - 电压(IV)测量,入射光子 - 电子的转换效率,透射率,和电化学阻抗谱(EIS)已用于发现的改善与后处理的性质。详细研究表明,热压缩改善了表面形态,透射率和电子传输,这又导致了光电流和功率转换效率的显着提高。在优化的热压缩(70°C加热时40MPa压缩)下,随后进行烧结条件,在1.5g的照明下,具有P25 TiO_2 PhotoNode的装置的总功率转换效率达到4.98%(100mW?cm〜 (-2))。这项工作表明,4L4Sepd结合热压缩后处理提供了一种制造高效DSC的方法。

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