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TiO2 nanocrystals shell layer on highly conducting indium tin oxide nanowire for photovoltaic devices

机译:二氧化钛纳米晶体外壳层高度进行铟锡氧化物纳米线太阳能光伏发电设备

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摘要

We demonstrated a highly efficient conducting indium tin oxide (ITO) core-TiO2 nanocrystals shell nanowire array for a photoelectrode in dye-sensitized solar cells with regard to light harvest and charge collection. The TiO2 shell layer, consisting of anatase nanocrystals of ~2 nm, were successfully formed on a single crystalline ITO nanowire prepared via a vapor transport method using repetitive TiCl4 aqueous solution treatments at 50 °C We found that the nanocrystal size and number of 0" ions remaining on the formed shell layer critically influence the dye loading properties. Moreover, these factors can be controlled by means of a post-annealing process. We also found that the dye loading and the back electron transport from the conductive ITO nanowire to the electrolyte mainly determine the final cell performance. The proposed double-shell layer structure consisting of dense and porous layers showed significantly improved cell performance.
机译:我们演示了一种高效的进行氧化铟锡(ITO) core-TiO2纳米晶体壳纳米线阵列的光电极涂料方面的太阳能电池收获和电荷收集。~ 2层,组成的锐钛矿纳米晶体nm,成功在一个形成的水晶ITO纳米线通过蒸汽准备使用重复TiCl4水运输方法解决方案治疗在50°C我们发现纳米晶体的大小和数量的剩余0”离子在形成壳层严重影响染料加载属性。可以通过控制因素气割后退火过程。染料加载和电子传递的电解液的导电ITO纳米线主要是确定最终的细胞的性能。提出了双层层结构组成明显的密度和多孔层显示改善电池的性能。

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