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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Preparation of functionalized and non-functionalized fullerene thin films on ITO glasses and the application to a counter electrode in a dye-sensitized solar cell
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Preparation of functionalized and non-functionalized fullerene thin films on ITO glasses and the application to a counter electrode in a dye-sensitized solar cell

机译:ITO玻璃上功能化和非功能化富勒烯薄膜的制备及其在染料敏化太阳能电池对电极中的应用

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Several thin films of [60]fullerene and the derivatives (3-5) have been prepared on ITO glasses by a common coating method using organic solutions and/or by an electrolytic micelle disruption method using surfactants with ferrocenyl moiety 2. In particular, the surface of the film formed by the electrolysis method was confirmed by SEM and AFM measurements, and then these images clearly exhibited that the entire surface of the ITO glass was uniformly covered with [60] fullerene. The UV-vis spectroscopy obviously showed that the thickness increased with the electrolysis time. For example, the thickness of the film formed by the electrolysis for 2 h was ca. 2,000 A. Furthermore, we investigated the potential utilization as a counter electrode material instead of Pt in a dye-sensitized solar cell (DSC). Consequently, these films, except for that of derivative 5 prepared by the coating process, were found to act as a counter electrode materials in a DSC. These photovoltaic efficiencies of the films prepared by the electric micelle disruption method were higher than those of the films prepared by the common coating method. In addition, the highest efficiency was obtained in the cases with the fullerene thin film formed by the electrolysis for 2 h.
机译:通过使用有机溶液的常规涂覆方法和/或通过使用具有二茂铁基部分2的表面活性剂的电解胶束破坏方法,在ITO玻璃上制备了[60]富勒烯及其衍生物(3-5)的薄膜。通过SEM和AFM测量确认了通过电解方法形成的膜的表面,然后这些图像清楚地表明ITO玻璃的整个表面均匀地被[60]富勒烯覆盖。紫外-可见光谱明显地表明厚度随电解时间而增加。例如,通过电解2小时形成的膜的厚度为约2μm。 2,000A。此外,我们研究了在染料敏化太阳能电池(DSC)中代替Pt用作对电极材料的潜在用途。因此,发现这些膜,除了通过涂布方法制备的衍生物5的膜以外,在DSC中都可以用作对电极材料。通过电胶束破坏方法制备的膜的这些光伏效率高于通过常规涂布方法制备的膜的光伏效率。另外,在通过电解2小时而形成的富勒烯薄膜的情况下,可获得最高的效率。

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