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首页> 外文期刊>CERAMICS INTERNATIONAL >Hydrothermal synthesis of oriented ZnO nanorod-nanosheets hierarchical architecture on zinc foil as flexible photoanodes for dye-sensitized solar cells
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Hydrothermal synthesis of oriented ZnO nanorod-nanosheets hierarchical architecture on zinc foil as flexible photoanodes for dye-sensitized solar cells

机译:锌箔上水热合成定向ZnO纳米棒-纳米片分层结构作为染料敏化太阳能电池的柔性光阳极

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摘要

ZnO nanorods-nanosheets (NR-NS) hierarchical architecture consisted of long nanorod backbones and thin nanosheet branches have been synthesized on zinc foil substrate via a two-step hydrothermal growth process for dye-sensitized solar cells application. The SEM observation showed that the smooth surfaces of nanorods were surrounded by nanosheets, resulting in the enhancement of internal surface area. The photovoltaic results indicated that short-circuit current density of the ZnO NR-NS hierarchical architecture based DSSC significantly increased as compared to that of nanorods based DSSC, which was ascribed to higher dye loading and superior light scattering within the NR-NS hierarchical architecture photoanode. As a result, the conversion efficiency (η) of the ZnO NR-NS hierarchical architecture based DSSC increased by 90% compared with that of the nanorods based DSSC. The electron transport properties were further investigated by means of open-circuit voltage decay (OCVD) and electrochemical impedance spectroscopy (EIS), showing higher electron recombination in NR-NS hierarchical photoanode.
机译:ZnO纳米棒-纳米片(NR-NS)分层结构由长纳米棒骨架和薄的纳米片分支组成,已通过两步水热生长工艺在锌箔基底上合成,用于染料敏化太阳能电池应用。 SEM观察表明,纳米棒的光滑表面被纳米片围绕,导致内表面积的增加。光伏结果表明,与基于纳米棒的DSSC相比,基于ZnO NR-NS分层结构的DSSC的短路电流密度显着增加,这归因于NR-NS分层结构的光阳极内较高的染料负载量和优异的光散射。结果,与基于纳米棒的DSSC相比,基于ZnO NR-NS分层体系结构的DSSC的转换效率(η)提高了90%。通过开路电压衰减(OCVD)和电化学阻抗谱(EIS)进一步研究了电子传输性能,显示了NR-NS分层光阳极中较高的电子重组。

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