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Metal Electroplating of Three Dimensional (3D) Electrode in Electrolyte-less Dye Sensitized Solar Cells (ELDSC)

机译:无电解染料敏化太阳能电池(ELDSC)中的三维(3D)电极的金属电镀

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摘要

The first Electrolyte-less dye sensitized solar cell (ELDSC) is proposed with the architecture of FTO-TiO_2-dye-metal. In the ELDSC design, the most significant contact is the TiO_2-dye-metal interface, whereby the metal electrode acts as the charge replenishment layer as well as the external electrode. In previous work, ELDSC has an inferior Fill Factor (FF) due to insufficient metal coverage from top-down physical vapor deposition. In this work, a three dimensional (3D) metal network plated through the mesoporous TiO_2 network is achieved through bottom-up metal electroplating. This study focuses on the characteristics of electro deposition onto insulating planar TiO_2 as well as mesoporous TiO_2 network. For planar TiP_2, gold (Au) islands form readily, becoming worm-like structures as they coalesce, subsequently becoming a continuous layer. (The plated metal on the insulating TiO_2 layer is made possible by plane defects within the insulator layer that serve as the conductive supply path.) In contrast, electroplating carried out on a FTO-planar TiO_2-mesoporous TiO_2 substrate results in a 3D Au network within the mesoporous TiO_2, where Au cords were observed as the connections among Au islands. This study demonstrates that a continuous metal layer can be electroplated onto an insulating TiO_2 layer, borrowing its intrinsic planar defect network. Further, applying the same principle, a 3D metal network can be formed within mesoporous TiO_2.
机译:提出了第一种具有FTO-TiO_2-染料-金属结构的无电解质染料敏化太阳能电池(ELDSC)。在ELDSC设计中,最重要的接触是TiO_2-染料-金属界面,金属电极既充当电荷补充层,又充当外部电极。在以前的工作中,ELDSC的填充因子(FF)较低,原因是自上而下的物理气相沉积导致的金属覆盖不足。在这项工作中,通过自下而上的金属电镀获得了通过介孔TiO_2网络镀覆的三维(3D)金属网络。这项研究的重点是电沉积在绝缘平面TiO_2以及介孔TiO_2网络上的特性。对于平面TiP_2,金(Au)岛易于形成,在聚结时变成蠕虫状结构,随后成为连续层。 (通过在绝缘层中用作导电供应路径的平面缺陷,可以在绝缘TiO_2层上镀金属。)相反,在FTO平面TiO_2介孔TiO_2衬底上进行电镀会形成3D Au网络在介孔TiO_2中,观察到金线是金岛之间的连接。这项研究表明,可以利用其固有的平面缺陷网络将连续的金属层电镀到绝缘的TiO_2层上。此外,应用相同的原理,可以在中孔TiO_2内形成3D金属网络。

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  • 会议地点 Boston MA(US);Boston MA(US);Boston MA(US)
  • 作者单位

    School of Materials Science and Engineering, Nanyang Technological University, Nanyang Avenue 639798, Singapore;

    ,GLOBALFOUNDRIES Singapore Private Limited, 60 Woodlands Industrial Park D Street 2 738406, Singapore;

    GLOBALFOUNDRIES Singapore Private Limited, 60 Woodlands Industrial Park D Street 2 738406, Singapore;

    School of Materials Science and Engineering, Nanyang Technological University, Nanyang Avenue 639798, Singapore;

    School of Materials Science and Engineering, Nanyang Technological University, Nanyang Avenue 639798, Singapore;

    GLOBALFOUNDRIES Singapore Private Limited, 60 Woodlands Industrial Park D Street 2 738406, Singapore;

    School of Materials Science and Engineering, Nanyang Technological University, Nanyang Avenue 639798, Singapore;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光电子技术、激光技术;光电子技术、激光技术;
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