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A Comparative Study of Nanostructured TiO2, ZnO and Bilayer TiO2/ZnO Dye-Sensitized Solar Cells

机译:纳米结构的TiO2,ZnO和双层TiO2 / ZnO染料敏化太阳能电池的比较研究

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Titanium dioxide (TiO2), Zinc oxide (ZnO) and bilayer TiO2/ZnO (TZO) based cells have been developed and sensitized with five organic dyes and one cocktail dye composed of five dyes. Photovoltaic performance of TiO2 and ZnO solar cell sensitized with six dyes is compared to that of bilayer TZO cells. The forward current is found to increase with applied voltage in the range V a parts per thousand currency sign 0.4 V, which is dominated by thermionic emission, whereas in 0.4 a parts per thousand currency sign V a parts per thousand currency sign 0.7 V, the current transport is due to space charge-limited current controlled by exponential trap distribution in all devices. The combined properties of the materials enhance the efficiency of composite TZO cells. TiO2 permits the formation of an energy barrier at the ZnO electrode/electrolyte interface, which reduces the back electron transfer from the conduction band of ZnO to I-3 (-) in the electrolyte. Also, due to the TiO2 layer on the ZnO, the latter forms a compact layer between flourine-doped tin oxide (FTO)/TiO2 which benefits the fast electron transfer from TiO2 to ZnO to FTO glass. This reduces the charge recombination occurring at the ZnO/FTO interface leading to higher open circuit voltage (V (oc)), higher short circuit current (J (sc)), lower series resistance (R (s)), and in turn higher efficiency in TZO solar cells as compared to ZnO cells. Among the six dyes, Eosin-Y and Rose Bengal dye gave the best performance as sensitizers with TZO.
机译:已经开发出基于二氧化钛(TiO2),氧化锌(ZnO)和双层TiO2 / ZnO(TZO)的电池,并用五种有机染料和一种由五种染料组成的混合物染料进行敏化。比较了用六种染料敏化的TiO2和ZnO太阳能电池与双层TZO电池的光伏性能。发现正向电流随施加电压的增加而增加,范围为V a千分之一货币符号0.4 V,这主要是由热电子发射引起的,而在0.4 a千分之一货币符号V中,千分之一货币符号0.7 V,电流传输是由于空间电荷受限电流受所有设备中的指数陷阱分布控制。材料的综合性能提高了复合TZO电池的效率。 TiO2允许在ZnO电极/电解质界面处形成能垒,从而减少了背电子从ZnO的导带到电解质中I-3(-)的转移。同样,由于ZnO上的TiO2层,后者在掺杂氟的氧化锡(FTO)/ TiO2之间形成了一个致密层,这有利于将电子从TiO2迅速转移到ZnO再转移到FTO玻璃。这减少了在ZnO / FTO接口处发生的电荷复合,从而导致更高的开路电压(V(oc)),更高的短路电流(J(sc)),更低的串联电阻(R(s)),进而更高与ZnO电池相比,TZO太阳能电池的效率更高。在这六种染料中,曙红-Y和玫瑰红染料作为TZO的敏化剂表现最佳。

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