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Fabrication of Hierarchical ZnO/TiO_2 Core-Shell Nanostructures for Advanced Photovoltaic Devices

机译:用于高级光伏器件的分层ZnO / TiO_2核心壳纳米结构的制造

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The advancement of nanomaterials and nanotechnology has provided huge potential to improve solar cell performance with an expectation of reducing the cost and improving the cell efficiency. Significant research has be.en done on nanorod based solar cells in recent years. In order to Increase surface area and improve the light trapping effect for cell efficiency enhancement, 3-D hierarchical ZnO nanostructures and ZnO/TiO_2 core-shell structures including nanorods, nanosheets, and nanoshrubs have been developed by using a solution based, two-step deposition process. The extremely large surface area is expected to improve dye loading and charge injection along with the improved light trapping, all of which helps to increase the energy conversion efficiency in dyesensitized solar cells. These solar cells were fabricated using the core-shell nanostructures, which showcases the potential of the unique nanomaterials in advanced photovoltaics.
机译:纳米材料和纳米技术的进步提供了提高太阳能电池性能的巨大潜力,期望降低成本并提高电池效率。近年来基于纳米棒的太阳能电池完成了显着的研究。为了增加表面积并改善电池效率增强的光捕集效果,通过使用基于溶液,两步开发了包括纳米棒,纳米片和纳米钻的3-D分层ZnO纳米结构和ZnO / TiO_2核壳结构。沉积过程。预计极大的表面积将改善染料装载和电荷注入以及改善的光捕获,所有这些都有助于提高脱敏的太阳能电池中的能量转化效率。使用核 - 壳纳米结构制造这些太阳能电池,其展示了先进的光伏中独特的纳米材料的电位。

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