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Fabrication and characterization of multiband solar cells based on highly mismatched alloys

机译:基于高度不匹配合金的多波段太阳能电池的制造和表征

摘要

Multiband solar cells are one type of third generation photovoltaic devices in which an increase of the power conversion efficiency is achieved through the absorption of low energy photons while preserving a large band gap that determines the open circuit voltage. The ability to absorb photons from different parts of the solar spectrum originates from the presence of an intermediate energy band located within the band gap of the material. This intermediate band, acting as a stepping stone allows the absorption of low energy photons to transfer electrons from the valence band to the conduction band by a sequential two photons absorption process. It has been demonstrated that highly mismatched alloys offer a potential to be used as a model material system for practical realization of multiband solar cells. Dilute nitride GaAs1-xNx highly mismatched alloy with low mole fraction of N is a prototypical multiband semiconductor with a well-defined intermediate band. Currently, we are using chemical beam epitaxy to synthesize dilute nitride highly mismatched alloys. The materials are characterized by a variety of structural and optical methods to optimize their properties for multiband photovoltaic devices
机译:多频带太阳能电池是第三代光伏装置的一种类型,其中通过吸收低能光子同时保持确定开路电压的大带隙来实现功率转换效率的提高。从太阳光谱的不同部分吸收光子的能力源自位于材料的带隙内的中间能带的存在。用作垫脚石的中间带允许低能量光子的吸收通过顺序的两个光子吸收过程将电子从价带转移到导带。已经证明高度失配的合金提供了用作实际实现多频带太阳能电池的模型材料系统的潜力。具有低N摩尔分数的稀氮化物GaAs1-xNx高度不匹配的合金是典型的多带半导体,具有明确的中间带。当前,我们正在使用化学束外延技术来合成稀氮化物高度失配的稀合金。该材料具有多种结构和光学方法的特点,可优化其多波段光伏器件的性能

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