Morphological dependance of charge transport in nanostructured ZnO-based dye sensitized solar cells

N. Elumalai, Mein Jin Tan, Jia Xing Lee, S. Dolmanan, Karen Ke Lin, Liu Bin, A. Nair, Vijila Chellappan, S. Ramakrishna
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Abstract

Zinc oxide (ZnO) photoanodes of two different morphologies — nanorods and nanosheets are used to fabricate dye sensitised solar cells in order to study the influence of morphology on device performance. Characteristics such as dye loading capacity and light scattering ability of the photoanodes depend on the morphology to a large extent. This leads to change in the electron transport properties, which in turn affects power conversion efficiency. Here we report the difference in the charge transport properties of these morphologies evaluated using the time resolved photocurrent measurements. The photocurrent transients for ZnO nano-rod film exhibited dual peak behaviour, whereas transients for ZnO nano-sheet film exhibited only one peak as the time delayed second peak corresponding to slow electron diffusion was totally suppressed. The transient photocurrent decay also indicates that the charge transport rate is much faster in the ZnO nano-sheets, which allows the efficient charge collection over much larger thickness compared to other ZnO nano-rod film. The power conversion efficiency (PCE) of the devices was found to be 1.6% and 1.5 % for the ZnO-nano-rod and nano-sheet based dye sensitized solar cells respectively. A comparative study is performed and the photovoltaic parameters obtained in each case are correlated with the photocurrent transients enabling better understanding of the impact of morphology.
纳米zno基染料敏化太阳能电池中电荷输运的形态依赖性
采用纳米棒和纳米片两种不同形貌的氧化锌(ZnO)光阳极制备染料敏化太阳能电池,研究其形貌对器件性能的影响。光阳极的载染能力和光散射能力等特性在很大程度上取决于其形貌。这会导致电子传递性质的改变,进而影响功率转换效率。在这里,我们报告了使用时间分辨光电流测量评估这些形态的电荷输运性质的差异。ZnO纳米棒薄膜的光电流瞬态表现为双峰行为,而ZnO纳米片薄膜的光电流瞬态表现为单峰行为,因为时间延迟的第二个峰对应的慢电子扩散被完全抑制。瞬态光电流衰减还表明,与其他ZnO纳米棒薄膜相比,ZnO纳米片中的电荷传输速率要快得多,这使得在更大的厚度上能够有效地收集电荷。该器件的功率转换效率(PCE)分别为1.6%和1.5%,分别用于zno纳米棒和纳米片染料敏化太阳能电池。进行了比较研究,并将每种情况下获得的光伏参数与光电流瞬态相关联,从而更好地理解形貌的影响。
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