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Well-aligned ZnO nanorod array covered with ruthenium layers for alternative counter electrodes in dye-sensitized solar cells

机译:用钌层覆盖着透析型敏化太阳能电池中的替代计数器的型型ZnO纳米峰阵列

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As an alternative material for conventional counter electrodes (CEs), which are usually made from Pt/fluorine doped tin oxide (FTO), well aligned ZnO nanorod arrays have great potential, their extremely high surface area can significantly increase the number of interfacial reaction sites in contact with the electrolyte. However, in order to use ZnO nanorod arrays as CEs, inferior charge collecting efficiency is a crucial obstacle that must be overcome. Here, patterned ZnO nanorod arrays are synthesized using a hydrothermal method and an Ru metal layer is deposited using a radio frequency sputtering process. We found the optimal conditions for ZnO nanorod growth that enable us to form vertically aligned ZnO nanorod arrays on only the ZnO seed layer. The Ru metal layer, coated onto the ZnO nanorod array serves both the role of the catalyst and the charge collecting electrode, its deposition process is controlled in such a way to maximize electrode performance. The results found in this study reveal the combination of Ru metal and the ZnO nanorod array has great potential as a lower cost alternative to Pt and FTO.
机译:至于常规的反电极(CES),其通常由铂制成的替代材料/掺杂氟的氧化锡(FTO),良好对准的ZnO纳米棒的阵列有很大的潜力,其非常高的表面积可以显著提高界面反应位点的数量在与电解质接触。然而,为了使用ZnO纳米棒的阵列作为CE设备,劣质的电荷收集效率是必须克服的关键障碍。在此,图案化ZnO纳米棒的阵列是利用水热法合成的Ru金属层使用射频溅射工艺沉积。我们发现ZnO纳米棒的增长,使我们能够形成只有ZnO晶种层上垂直排列的ZnO纳米棒阵列的最佳条件。 Ru金属层,涂覆在ZnO纳米棒阵列用作催化剂的同时作用,电荷收集电极,其沉积过程在这样的方式以最大化电极性能控制。在本研究中发现的结果表明钌金属的组合和ZnO纳米棒阵列具有很大的潜力作为较低成本的替代Pt和FTO。

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