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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Effect of Fe content on Cu2Fex-Zn1-xSnS4 single crystals fabricated by flux growth method
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Effect of Fe content on Cu2Fex-Zn1-xSnS4 single crystals fabricated by flux growth method

机译:Fe含量对通过助焊剂生长法制造的Cu2Fex-Zn1-XSNS4单晶的影响

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摘要

High quality micron-sized Cu2FexZn1-xSnS4 single crystals have been successfully fabricated by flux growth method using CuS, FeS, ZnS and SnS as the raw materials and CsCl as the fluxing agent. The effects of Fe contents on the morphology, structure and optical properties of Cu2FexZn1-xSn4 single crystals were investigated. X-ray diffraction and Raman analyses reveal that the kesterite and stannite phases coexist in the Cu2FexZn1-xSnS4 crystals, and peak splittings of (204) and (312) are observed for the sample with x = 0.2. The optical absorption spectra reveal that the optical bandgap of the single crystal samples has little dependence on the Fe content due to the coexistence of the kesterite and stannite phases. The bandgap of the Cu2FexZn1-xSnS4 single crystal generally locates between 1.672 and 1.716 eV. Though the bandgap is not ideal as the absorber for single junction solar cells according to the S-Q limit, it is an ideal material for the top cell in tandem solar cells and solar-driven water splitting.
机译:通过使用CUS,FES,ZNS和SNS作为原料和CSCL作为助熔剂,通过通量生长方法成功制造了高质量的微米尺寸Cu2FexzN1-XSNS4单晶。研究了Fe含量对Cu2FexZN1-XSN4单晶的形态,结构和光学性质的影响。 X射线衍射和拉曼分析表明,基酯和斯氏菌胎相在Cu2FexzN1-XSNS4晶体中共存,并且用X = 0.2的样品观察到(204)和(312)的峰值分接头。光学吸收光谱揭示了单晶样品的光学带隙由于凯特矿石和斯坦茅岛相的共存而几乎没有对Fe含量的依赖性。 Cu2Fexzn1-XSNS4单晶的带隙通常位于1.672和1.716eV之间。虽然带隙不理想的是根据S-Q限制作为单结太阳能电池的吸收器,但它是串联太阳能电池和太阳能驱动的水分裂的顶部电池的理想材料。

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