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首页> 外文期刊>Nanoscale >Growth of a sea urchin-like rutile TiO2 hierarchical microsphere film on Ti foil for a quasi-solid-state dye-sensitized solar cell
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Growth of a sea urchin-like rutile TiO2 hierarchical microsphere film on Ti foil for a quasi-solid-state dye-sensitized solar cell

机译:增长的海上urchin-like金红石二氧化钛分层微电影在钛箔色素增感太阳能电池quasi-solid-state

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摘要

A sea urchin-like rutile TiO2 microsphere (RMS) film was fabricated on Ti foil via a hydrothermal process. The resulting rutile TiO2 hierarchical microspheres with a diameter of 5-6 mu m are composed of nanorods with a diameter of similar to 200 nm and a length of 1-2 mu m. The sea urchin-like hierarchical structure leads to the Ti foil-based RMS film possessing much better light-scattering capability in the visible region than the bare Ti foil. By using it as an underlayer of a nanosized anatase TiO2 film (bTPP3) derived from a commercially available paste (TPP3), the corresponding bilayer Ti foil-based quasi-solid-state dye-sensitized solar cell (DSSC) only gives a conversion efficiency of 4.05%, much lower than the single bTPP3 film-based one on Ti foil (5.97%). By spin-coating a diluted TPP3 paste (sTPP3) on the RMS film prior to scraping the bTPP3 film, the resulting RMS/sTPP3/bTPP3 film-based DSSC achieves a significantly enhanced efficiency (7.27%). The electrochemical impedance spectra (EIS) show that the RMS/sTPP3/bTPP3 film possesses better electron transport capability and longer electron lifetime than the bTPP3 film. This work not only provides the first example of directly growing rutile TiO2 hierarchically structured microsphere film on Ti foil suitable for replacing the rigid, heavy and expensive transparent conductive oxide (TCO) glass substrate to serve as a light-scattering underlayer of Ti foil-based quasi-solid-state DSSCs, but also paves a new route to develop Ti foil-based flexible DSSCs with high efficiency, low cost and a wide application field through optimizing the composition and structure of the photoanode.
机译:海urchin-like金红石二氧化钛微球(RMS)通过水热电影制作在钛箔的过程。微球直径5 - 6μm由纳米棒直径相似200纳米,长度1 - 2μm。大海urchin-like分层结构导致的Ti foil-based RMS电影拥有更好的可见区域的光散射能力比钛箔。下层的纳米锐钛矿二氧化钛薄膜(bTPP3)来自一个商业应用粘贴(TPP3),相应的双层Ti色素增感太阳能foil-based quasi-solid-state细胞(DSSC)只给一个转换的效率4.05%,远低于单一bTPP3薄膜在钛箔(5.97%)。旋转涂布稀释TPP3粘贴(sTPP3)RMS电影刮bTPP3电影之前,产生的RMS / sTPP3 bTPP3胶卷的DSSC达到显著提高效率(7.27%)。(EIS)表明RMS / sTPP3 bTPP3电影拥有更好的电子传递能力和更长的电子寿命比bTPP3电影。这项工作不仅提供了第一个例子直接增加金红石二氧化钛层级结构在钛箔合适的微电影取代刚性的,沉重的和昂贵的透明导电氧化物(TCO)玻璃底物作为光散射下层的Ti foil-based quasi-solid-stateDSSCs,也为一个新的路线发展foil-based灵活DSSCs效率高,低成本的和广泛的应用领域优化的成分和结构光电阳极。

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