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首页> 外文期刊>ChemSusChem >Highly Efficient Copper-Zinc-Tin-Selenide ( CZTSe) Solar Cells by Electrodeposition
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Highly Efficient Copper-Zinc-Tin-Selenide ( CZTSe) Solar Cells by Electrodeposition

机译:高效铜 - 锌 - 锡硒化硒(CZTSE)太阳能电池通过电沉积

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摘要

Highly efficient copper-zinc-tin-selenide (Cu2ZnSnSe4; CZTSe) thin-film solar cells are prepared via the electrodepostion technique. A metallic alloy precursor (CZT) film with a Cu-poor, Zn-rich composition is directly deposited from a single aqueous bath under a constant current, and the precursor film is converted to CZTSe by annealing under a Se atmosphere at temperatures ranging from 400 degrees C to 600 degrees C. The crystallization of CZTSe starts at 400 degrees C and is completed at 500 degrees C, while crystal growth continues at higher temperatures. Owing to compromises between enhanced crystallinity and poor physical properties, CZTSe thin films annealed at 550 degrees C exhibit the best and most-stable device performances, reaching up to 8.0% active efficiency; among the highest efficiencies for CZTSe thin-film solar cells prepared by electrodeposition. Further analysis of the electronic properties and a comparison with another state-of-the-art device prepared from a hydrazine-based solution, suggests that the conversion efficiency can be further improved by optimizing parameters such as film thickness, antireflection coating, MoSe2 formation, and p-n junction properties.
机译:高效铜 - 锌 - 硒化硒(Cu2ZNSNSE4; CZTSE)薄膜太阳能电池由电源梯技术制备。在恒定电流下从单个水浴中沉积具有Cu-差,富含Zn的组合物的金属合金前体(CZT)膜,通过在400的温度下通过退火,通过退火转化为CZTSE的前体膜转化为CZTSE渐变的C至600℃.CZTSE的结晶在400℃下开始,并在500℃下完成,而晶体生长在较高温度下继续。由于增强的结晶度和物理性质差,在550℃下退火的CZTSE薄膜表现出最佳和最稳定的装置性能,达到高达8.0%的主动效率;在通过电沉积制备的CZTSE薄膜太阳能电池的最高效率中。进一步分析电子性质和与由肼基溶液制备的另一种最先进的装置的比较,表明通过优化胶片厚度,抗反射涂层,MOSE2形成等参数,可以进一步提高转换效率,和PN结特性。

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