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Facile fabrication of sub-100 nm mesoscale inverse opal films and their application in dye-sensitized solar cell electrodes

机译:100 nm以下中尺度反蛋白石膜的简便制备及其在染料敏化太阳能电池电极中的应用

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摘要

Inverse opal (IO) films with mesoporous structures hold promise as high-performance electrodes for various photoelectrochemical devices because of their high specific area as well as their fully connected pore structure. A great challenge to their use is obtaining an intact film of mesoscale colloidal crystals as a template. Here, using the plate-sliding coating method coupled with hot air flow, we successfully deposited mesoscale colloidal crystals onto the substrate. A TiO2 mesoscale IO (meso-IO) with 70 nm pores was then successfully fabricated via atomic layer deposition of TiO2 and subsequent removal of the template. As a photoelectrochemical electrode, the meso-IO structure exhibits enhanced charge transport properties as well as a high specific area. Moreover, dye-sensitized solar cells fabricated using the meso-IO electrode exhibit a higher photocurrent and cell efficiency than a cell constructed using a conventional TiO2 nanoparticle electrode. This meso-IO film provides a new platform for developing electrodes for use in various energy storage and conversion devices.
机译:具有中孔结构的反蛋白石(IO)膜具有高比表面积以及完全连通的孔结构,因此有望作为各种光电化学装置的高性能电极。使用它们的一大挑战是获得完整的中尺度胶体晶体膜作为模板。在这里,使用板式滑动涂覆方法结合热气流,我们成功地将中尺度胶体晶体沉积到了基板上。然后,通过原子层沉积TiO2并随后去除模板,成功地制造了具有70 nm孔的TiO2中尺度IO(meso-IO)。作为光电化学电极,内消旋-IO结构表现出增强的电荷传输性质以及高比表面积。而且,与使用常规TiO 2纳米颗粒电极构造的电池相比,使用meso-IO电极制造的染料敏化太阳能电池表现出更高的光电流和电池效率。这种介孔IO膜为开发用于各种能量存储和转换设备的电极提供了新的平台。

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