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Tunable Localized Surface Plasmon-Enabled Broadband Light-Harvesting Enhancement for High-Efficiency Panchromatic Dye-Sensitized Solar Cells

机译:用于高效全色染料敏化太阳能电池的可调谐局部表面等离子体激元宽带光采集增强

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摘要

In photovoltaic devices, light harvesting (LH) and carrier collection have opposite relations with the thickness of the photoactive layer, which imposes a fundamental compromise for the power conversion efficiency (PCE). Unbalanced LH at different wavelengths further reduces the achievable PCE. Here, we report a novel approach to broadband balanced LH and panchromatic solar energy conversion using multiple-core–shell structured oxide-metal-oxide plasmonic nanoparticles. These nanoparticles feature tunable localized surface plasmon resonance frequencies and the required thermal stability during device fabrication. By simply blending the plasmonic nanoparticles with available photoactive materials, the broadband LH of practical photovoltaic devices can be significantly enhanced. We demonstrate a panchromatic dye-sensitized solar cell with an increased PCE from 8.3% to 10.8%, mainly through plasmon-enhanced photoabsorption in the otherwise less harvested region of solar spectrum. This general and simple strategy also highlights easy fabrication, and may benefit solar cells using other photoabsorbers or other types of solar-harvesting devices.
机译:在光伏设备中,光收集(LH)和载流子收集与光敏层的厚度具有相反的关系,这对功率转换效率(PCE)造成了根本的损害。 LH在不同波长下的不平衡进一步降低了可达到的PCE。在这里,我们报告了一种使用多核壳结构的氧化物-金属-氧化物等离子体纳米颗粒实现宽带平衡LH和全色太阳能转换的新方法。这些纳米粒子具有可调的局部表面等离子体共振频率和器件制造过程中所需的热稳定性。通过简单地将等离子体纳米颗粒与可用的光敏材料混合,可以显着提高实际光伏设备的宽带LH。我们展示了一种全色染料敏化太阳能电池,其PCE从8.3%增加到10.8%,主要是通过在其他情况下收获较少的太阳光谱区域中的等离子体增强光吸收。这种通用且简单的策略还强调了易于制造,并且可能会使使用其他光吸收剂或其他类型的太阳能收集设备的太阳能电池受益。

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