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Numerical Study of Complementary Nanostructures for Light Trapping in Colloidal Quantum Dot Solar Cells

机译:胶体量子点太阳能电池中光俘获的互补纳米结构的数值研究

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We have investigated two complementary nanostructures, nanocavity and nanopillar arrays, for light absorption enhancement in depleted heterojunction colloidal quantum dot (CQD) solar cells. A facile complementary fabrication process is demonstrated for patterning these nanostructures over the large area required for light trapping in photovoltaic devices. The simulation results show that both proposed periodic nanostructures can effectively increase the light absorption in CQD layer of the solar cell throughout the near-infrared region where CQD solar cells typically exhibit weak light absorption. The complementary fabrication process for implementation of these nanostructures can pave the way for large-area, inexpensive light trapping implementation in nanostructured solar cells.
机译:我们研究了两个互补的纳米结构,纳米腔和纳米柱阵列,用于耗尽异质胶体量子点(CQD)太阳能电池中的光吸收增强。为了在光伏器件中捕获光所需的大面积上构图这些纳米结构,证明了一种简便的互补制造工艺。仿真结果表明,所提出的两种周期性纳米结构均可以有效地提高整个CQD太阳能电池的弱红外吸收率的整个近红外区域的太阳能电池CQD层的光吸收。用于实现这些纳米结构的互补制造工艺可以为纳米结构太阳能电池中大面积,廉价的光捕获实现铺平道路。

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