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Comparison of potassium-functionalized Cu2ZnSnS4 nanoparticles annealed in different reactive sulfide atmospheres

机译:钾官能化Cu 2 ZnSNS 4 纳米颗粒在不同反应性硫化物大气中退火

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Kesterite Cu2 ZnSnS4 (CZTS) can be a promising, alternative material for thin-film solar cells, because it is earth-abundant, non-toxic and displays relevant physical properties. For future up-scaling possibilities and to decrease the environmental impact of the photovoltaic technology, solution-processing deposition methods are desired. This paper deals with CZTS absorber layers fabricated from CZTS nanoparticles that are functionalized with KCl, and investigates two different types of furnaces for the annealing process; a hydrogen sulfide (H2S) flow furnace and a nitrogen atmosphere closed furnace. We find that more uniform grain growth is achieved when annealing in a closed furnace, while very large grains on the surface of the film are obtained when annealing in H2S.
机译:KETERTES CU 2 znsns. 4 (CZTS)可以是薄膜太阳能电池的有希望的替代材料,因为它是土坯,无毒的,并且显示出相关的物理性质。为了将来的上缩放可能性和降低光伏技术的环境影响,需要解决方案处理沉积方法。本文涉及由CZTS纳米颗粒制造的CZTS吸收层,其用KCl官能化,并研究两种不同类型的炉子进行退火工艺;硫化氢(H 2 S)流动炉和氮气氛封闭炉。我们发现在闭合炉中退火时实现了更均匀的晶粒生长,而在H中退火时,可以获得薄膜表面上的非常大的晶粒 2 S.

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