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Third generation photovoltaic cells based on photonic crystals

机译:基于光子晶体的第三代光伏电池

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Third-generation photovoltaic cells (PVCs) represented by organic solar cells, dye-sensitized solar cells, quantum dot solar cells and perovskite solar cells have attracted intense attention due to their low cost, light weight, flexibility and large area, enabling wide application in wearable devices, building photovoltaics and other fields. In order to meet the requirements of practical applications, PVCs need to have outstanding performance in both optics and electronics. The light management method using photonic crystals is considered to be one of the most promising methods to further improve the performance of the third generation OPVs. Benefiting from structure design combined with photonic modes such as Bloch structures, microcavity structures, and interference effects, PCs can be well-used as optics filters, reflectors, or photoanodes to intentionally enhance light trapping and color features. Creatively, thirdgeneration PVCs based on different dimension PCs have been demonstrated by various methods and achieved excellent photovoltaic performance. This review provides a comprehensive and detailed summary of PC-based third-generation PVCs in terms of the structure design, physical mechanism and device performance.
机译:由有机太阳能电池,染料敏化太阳能电池,量子点太阳能电池和钙钛矿太阳能电池代表的第三代光伏电池(PVC)由于其成本低,重量轻,灵活性和大面积而引起了强烈的关注,使得能够广泛应用可穿戴设备,建筑光伏等领域。为了满足实际应用的要求,PVC需要在光学和电子产品中具有出色的性能。使用光子晶体的光管理方法被认为是进一步提高第三代OPVS性能的最有希望的方法之一。从结构设计中受益于光子模式,如Bloch结构,微腔结构和干扰效果,PC可以充分用作光学滤波器,反射器或光阳极,以有意增强光捕集和颜色特征。创造性地,通过各种方法证明了基于不同尺寸PC的第三种PVC,并实现了优异的光伏性能。此述评在结构设计,物理机制和设备性能方面提供了基于PC的第三代PVC的全面和详细摘要。

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