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Colloidal Sb2S3 Nanocrystals: Synthesis, Characterization and Fabrication of Solid-State Semiconductor Sensitized Solar Cell

机译:胶体Sb2S3纳米晶体:固态半导体敏化太阳能电池的合成,表征和制造。

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摘要

Inorganic nanocrystals composed of earth-abundant and non-toxic elements are crucial to fabricated sustainable photovoltaic devices in large scale. In this study, various-shaped and different phases of antimony sulfide nanocrystals, which is composed of non-scarce and non-toxic elements, are synthesized using hot-injection colloidal method. The effect of various synthetic parameters on the final morphology is explored. Also, foreign ion (Chlorine) effects on the morphology of Sb2S3 nanocrystals have been observed. Structural, optical and morphological properties of the nanocrystals were investigated, and Sb2S3 nanocrystal-based solid-state semiconductor-sensitized solar cells were fabricated using as-prepared nanocrystals. We achieved promising power conversion efficiencies of 1.48%.
机译:由大量地球和无毒元素组成的无机纳米晶体对于大规模制造可持续光伏设备至关重要。本研究采用热注入胶体法合成了由非稀少,无毒元素组成的硫化锑纳米晶不同形状,不同相。探索了各种合成参数对最终形态的影响。此外,已观察到外来离子(氯)对Sb2S3纳米晶体形态的影响。研究了纳米晶体的结构,光学和形态特性,并使用制备的纳米晶体制备了基于Sb2S3纳米晶体的固态半导体敏化太阳能电池。我们实现了有希望的1.48%的电源转换效率。

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