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Monolithic Two-Dimensional Photonic Crystal Reflectors for the Fabrication of Highly Efficient and Highly Transparent Dye-Sensitized Solar Cells

机译:用于制备高效且高度透明的染料敏化太阳能电池的整体二维光子晶体反射器

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The transparent characteristic of dye-sensitized solar cells (DSCs) makes them suitable for building integrated photovoltaic (BIPV) devices. However, the diffusive scattering layer, which is usually used to increase the efficiency of these devices, greatly lowers the transparency of the DSC. This paper described a two-dimensional (2D) photonic crystal (PC) reflector with a sub-micrometer characteristic length that can improve the efficiency of these devices while maintaining transparency. This 2D PCs were fabricated directly onto TiO2 photoelectrodes using colloidal lithography and have the structure of a nanopillar array. A nanopillar with a height of 430 nm was observed to selectively reflect up to 40% of the light of 400-500 nm wavelength. The perceived transparency of the 2D PC electrode was 52%, which is much higher than 0.3% of the conventional scattering layer. The DSC fabricated using the 2D PC electrode demonstrated a maximum photon-to-electric conversion efficiency of 8.23%, which is 18% higher than the pristine electrode. The 2D PC is a highly efficient and wavelength selective reflector that can be applied to various photoelectric conversion devices.
机译:染料敏化太阳能电池(DSCs)的透明特性使其适用于构建集成的光伏(BIPV)器件。然而,通常用于提高这些器件的效率的漫射散射层极大地降低了DSC的透明度。本文描述了具有子微米的二维(2D)光子晶体(PC)反射器,其具有可以提高这些装置的效率,同时保持透明度。使用胶体光刻将该2D PC直接制造在TiO 2光电系上,并具有纳米池阵列的结构。观察到高度为430nm的纳米玻璃,以选择性地反射高达400-500nm波长的40%的光。 2D PC电极的感知透明度为52%,高于传统散射层的0.3%。使用2D PC电极制造的DSC显示最大光子至电转换效率为8.23%,比原始电极高18%。 2D PC是一种高效且波长的选择性反射器,可以应用于各种光电转换装置。

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