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Formation of Copper Zinc Tin Sulfide Thin Films from Colloidal Nanocrystal Dispersions via Aerosol-Jet Printing and Compaction

机译:胶体纳米晶体分散体通过气溶胶喷射印刷和压实形成铜锌硫化锡薄膜

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摘要

A three-step method to create dense polycrystalline semiconductor thin films from nanocrystal liquid dispersions is described. First, suitable substrates are coated with nanocrystals using aerosol-jet printing. Second, the porous nanocrystal coatings are compacted using a weighted roller or a hydraulic press to increase the coating density. Finally, the resulting coating is annealed for grain growth. The approach is demonstrated for making polycrystalline films of copper zinc tin sulfide (CZTS), a new solar absorber composed of earth-abundant elements. The range of coating morphologies accessible through aerosol-jet printing is examined and their formation mechanisms are revealed. Crack-free albeit porous films are obtained if most of the solvent in the aerosolized dispersion droplets containing the nanocrystals evaporates before they impinge on the substrate. In this case, nanocrystals agglomerate in flight and arrive at the substrate as solid spherical agglomerates. These porous coatings are mechanically compacted, and the density of the coating increases with compaction pressure. Dense coatings annealed in sulfur produce large-grain (>1 mu m) polycrystalline CZTS films with microstructure suitable for thin-film solar cells.
机译:描述了一种由纳米晶体液体分散体产生致密的多晶半导体薄膜的三步法。首先,使用气溶胶喷射印刷法将合适的基材涂上纳米晶体。第二,使用配重辊或液压机压实多孔纳米晶体涂层以增加涂层密度。最后,将所得涂层退火以进行晶粒生长。该方法用于制造硫化铜锌锡(CZTS)的多晶膜,这是一种由大量地球元素组成的新型太阳能吸收剂。检查了可通过气溶胶喷射印刷获得的涂层形态范围,并揭示了其形成机理。如果包含纳米晶体的雾化分散液滴中的大部分溶剂在撞击到基材上之前就蒸发了,则可以获得无裂纹的多孔膜。在这种情况下,纳米晶体在飞行中会聚结,并以固态球形聚结的形式到达基板。这些多孔涂层被机械压实,并且涂层的密度随着压实压力而增加。在硫中退火的致密涂层会产生大晶粒(> 1微米)的多晶CZTS薄膜,其微结构适用于薄膜太阳能电池。

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