首页> 外文期刊>Chemistry: A European journal >In Situ Photocatalytically Heterostructured ZnOAg Nanoparticle Composites as Effective Cathode-Modifying Layers for Air-Processed Polymer Solar Cells
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In Situ Photocatalytically Heterostructured ZnOAg Nanoparticle Composites as Effective Cathode-Modifying Layers for Air-Processed Polymer Solar Cells

机译:原位光催化异质结构的ZnOAg纳米颗粒复合材料作为空气处理的聚合物太阳能电池的有效阴极改性层

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A heterostructured semiconductor-metal ZnOAg nanoparticle (NP) composite was constructed through a straightforward photocatalytic strategy by using UV irradiation of ZnO NPs and an aqueous solution of Ag precursor. The ZnOAg NP composites serve as an effective cathode-modifying layer in polymer solar cells (PSCs) with increased short-circuit current density owing to the light-trapping effect, and improved optical and electrical conductivity properties compared with pure ZnO NPs. The Ag NPs, which are photodeposited in situ on ZnO NPs, can act as effective antennas for incident light to maximize light harvesting and minimize radiative decay or nonradiative losses, consequently resulting in the enhanced photogeneration of excitons in PSCs. Systematic photoelectron and -physical investigations confirm that heterostructured ZnOAg NPs can significantly improve charge separation, transport, and collection, as well as lower charge recombination at the cathode interface, leading to a 14.0% improvement in air-processed device power conversion efficiency. In addition, this processable, cost-effective, and scalable approach is compatible with roll-to-roll manufacturing of large-scale PSCs.
机译:通过使用ZnO NPs的紫外线照射和Ag前驱体的水溶液,通过直接的光催化策略构建了异质结构的半导体-金属ZnOAg纳米颗粒(NP)复合材料。 ZnOAg NP复合材料可作为聚合物太阳能电池(PSC)中有效的阴极改性层,与纯ZnO NPs相比,由于光捕获效应,其短路电流密度增加,光和电导率性能得到改善。 Ag NPs原位沉积在ZnO NPs上,可以充当入射光的有效天线,以最大程度地收集光并最小化辐射衰减或非辐射损耗,从而导致PSC中激子的光生作用增强。系统的光电子和物理研究证实,异质结构的ZnOAg NP可以显着改善电荷的分离,传输和收集,并降低阴极界面处的电荷复合,从而使空气处理的器件功率转换效率提高14.0%。此外,这种可处理,经济高效且可扩展的方法与大规模PSC的卷对卷制造兼容。

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