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Nanostructures for Light Trapping in Thin Film Solar Cells

机译:薄膜太阳能电池中光捕获的纳米结构

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摘要

Thin film solar cells are one of the important candidates utilized to reduce the cost of photovoltaic production by minimizing the usage of active materials. However, low light absorption due to low absorption coefficient and/or insufficient active layer thickness can limit the performance of thin film solar cells. Increasing the absorption of light that can be converted into electrical current in thin film solar cells is crucial for enhancing the overall efficiency and in reducing the cost. Therefore, light trapping strategies play a significant role in achieving this goal. The main objectives of light trapping techniques are to decrease incident light reflection, increase the light absorption, and modify the optical response of the device for use in different applications. Nanostructures utilize key sets of approaches to achieve these objectives, including gradual refractive index matching, and coupling incident light into guided modes and localized plasmon resonances, as well as surface plasmon polariton modes. In this review, we discuss some of the recent developments in the design and implementation of nanostructures for light trapping in solar cells. These include the development of solar cells containing photonic and plasmonic nanostructures. The distinct benefits and challenges of these schemes are also explained and discussed.
机译:薄膜太阳能电池是用于通过使活性材料的使用最小化来降低光伏生产成本的重要候选之一。然而,由于低吸收系数和/或不足的有源层厚度而导致的低光吸收会限制薄膜太阳能电池的性能。在薄膜太阳能电池中增加可转换为电流的光的吸收对于提高整体效率和降低成本至关重要。因此,光捕获策略在实现此目标中起着重要作用。捕光技术的主要目标是减少入射光的反射,增加光的吸收并修改设备的光学响应以用于不同的应用。纳米结构利用关键的方法来实现这些目标,包括逐步实现折射率匹配,以及将入射光耦合到引导模式和局部等离子体激元共振以及表面等离子体激元模式。在这篇综述中,我们讨论了设计和实现用于太阳能电池中光捕获的纳米结构的最新进展。这些包括开发包含光子和等离子体纳米结构的太阳能电池。这些方案的独特优势和挑战也得到了解释和讨论。

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