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Vertically-aligned carbon nanotube counter electrodes for dye-sensitized solar cells

机译:垂直排列的碳纳米管对电极,用于染料敏化太阳能电池

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Vertically-aligned carbon nanotube forests can be used as counter electrodes for triiodide reduction in dye-sensitized solar cells. It is desirable to use a highly conductive substrate for nanotube growth that can serve as a mechanical and electrical support for the nanotube forest in the operating cell. Unfortunately, the high temperatures and harsh atmospheres required for nanotube growth preclude the use of many common substrates. Fluorine doped tin oxide coated glass, stainless steel and aluminum have been investigated as counter electrode substrates using a variety of common chemical vapour deposition techniques for carbon nanotubes. Changes in the chemical, electrical and morphological properties of the substrates have been studied using X-ray photoelectron spectroscopy, resistance measurements and scanning electron microscopy. Under all growth conditions, fluorine doped tin oxide was reduced to tin which subsequently de-wets the surface, forming isolated islands of tin on glass. Aluminum and stainless steel were successfully used as growth substrates, and DSSCs constructed using the resulting nanotube forests had efficiencies comparable to those constructed using Pt counter electrodes. The nanotube DSSCs were found to have a higher series resistance, due to the lower catalytic activity of the nanotube surface compared to Pt.
机译:垂直排列的碳纳米管森林可用作染料敏化太阳能电池中三碘化物还原的对电极。期望使用用于纳米管生长的高导电性基底,其可以用作手术室中的纳米管森林的机械和电支撑。不幸的是,纳米管生长所需的高温和苛刻的气氛阻止了许多普通基板的使用。已经使用各种常见的化学气相沉积技术对碳纳米管进行了氟掺杂的氧化锡涂层玻璃,不锈钢和铝作为对电极基板的研究。已使用X射线光电子能谱,电阻测量和扫描电子显微镜研究了基材化学,电学和形态学特性的变化。在所有生长条件下,将掺氟的氧化锡还原为锡,随后将其润湿,从而在玻璃上形成孤立的锡岛。铝和不锈钢已成功用作生长基质,并且使用所得纳米管森林构造的DSSC具有与使用Pt对电极构造的DSSC相当的效率。发现纳米管DSSC具有较高的串联电阻,这是由于与Pt相比,纳米管表面的催化活性较低。

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