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Nanomaterials and nanostructures for efficient light absorption and photovoltaics (Review)

机译:用于高效光吸收和光伏的纳米材料和纳米结构(综述)

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Nanomaterials and nanostructures hold promising potency to enhance the performance of solar cells by improving both light trapping and photo-carrier collection. Meanwhile these new materials and structures can be fabricated in a low-cost fashion, enabling cost-effective production of photovoltaics. In this review, we summarize the recent development of studies on intriguing optical properties of nanomaterialsanostructures and efforts on building solar cell devices with these materials and structures. As the family of nanomaterials has great diversity, we highlighted a number of representative materials and structures, including nanowires, nanopillars, nanocones, nanodomes, nanoparticles, etc. And we have covered materials include crystalline Si, amorphous Si, CdS, CdSe, CdTe, ZnO, CuInSe _2, etc. These materials and structures have different physical properties, such as band-gap, absorption coefficient, surface/bulk recombination rate, etc., as well as different synthesis/fabrication approaches. Works on these materials and structures have laid a solid foundation for developing a new generation photovoltaics.
机译:纳米材料和纳米结构具有通过改善光捕获和光载流子收集来增强太阳能电池性能的潜力。同时,可以以低成本方式制造这些新材料和结构,从而实现具有成本效益的光伏产品生产。在这篇综述中,我们总结了有趣的纳米材料/纳米结构光学特性研究的最新进展以及用这些材料和结构构建太阳能电池器件的努力。由于纳米材料家族的多样性,我们重点介绍了许多代表性材料和结构,包括纳米线,纳米柱,纳米锥,纳米球,纳米颗粒等。我们涵盖了包括结晶硅,非晶硅,CdS,CdSe,CdTe, ZnO,CuInSe _2等。这些材料和结构具有不同的物理特性,例如带隙,吸收系数,表面/本体复合率等,以及不同的合成/制造方法。这些材料和结构的工作为开发新一代光伏电池奠定了坚实的基础。

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