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Design of SnO2 Aggregate/Nanosheet Composite Structures Based on Function-Matching Strategy for Enhanced Dye-Sensitized Solar Cell Performance

机译:基于功能匹配策略的SnO2聚集体/纳米片复合结构设计以增强染料敏化太阳能电池的性能

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摘要

Hierarchical SnO2 nanocrystallites aggregates (NAs) were prepared with a simple room temperature–based aqueous solution method followed by simple freeze-drying treatment. The as-prepared SnO2 NAs were subsequently combined with SnO2 nanosheet–based structures from the viewpoint of a function-matching strategy, and under an optimized condition, a power conversion efficiency (PCE) of 5.59% was obtained for the resultant hybrid photoanode, a remarkable 60% enhancement compared to that of dye-sensitized solar cells (DSCs) fabricated with bare SnO2 NAs architecture. The significantly enhanced efficiency can be attributed to the combination of the desirable electron transport property obtained by the intentionally introduced SnO2 nanosheets (NSs) and the effectively retained inherent characteristics of SnO2 NAs, i.e., large surface area and strong light-scattering effect. This work provides a promising approach for the rapid development of highly efficient SnO2 photoanode film-based DSCs with the properties of simplicity of operation and control over the photoanode composition.
机译:采用简单的基于室温的水溶液方法,然后进行简单的冷冻干燥处理,制备了分级的SnO2纳米微晶聚集体(NAs)。从功能匹配策略的观点出发,将准备好的SnO2 NAs与基于SnO2纳米片的结构相结合,在优化条件下,得到的混合光阳极的功率转换效率(PCE)为5.59%。与用裸露的SnO2 NAs架构制造的染料敏化太阳能电池(DSC)相比,显着提高了60%。效率的显着提高可归因于通过有意引入的SnO2纳米片(NSs)获得的理想电子传输性能与有效保留的SnO2 NAs固有特性(即大表面积和强光散射效果)的结合。这项工作为高效开发基于SnO2光电阳极薄膜的DSC提供了一种有前途的方法,该DSC具有操作简单和对光电阳极成分进行控制的特性。

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