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CZTS layers formed under sulfur-limited conditions at above atmospheric pressure

机译:在大气压高于大气压下在硫的条件下形成的CZTS层

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In this study CZTS thin films were grown by a two-stage process that involved sequential sputter deposition of metallic Cu, Zn, and Sn layers on Mo coated glass substrates followed by RTP annealing in a sulfur atmosphere at background gas pressures in the range of 1-2 atm. Sulfurization was carried out in a mini reaction volume that provided a relatively S-limited environment Reacted films were characterized using XRD, EDX, SEM, photoluminescence and Raman spectroscopy. It was found that, under the S-limited regime provided in these experiments the Cu-S secondary phase formation was most extreme in the sample grown at 1.5 aim, whereas films grown at lower and higher pressures showed much smaller degree of phase separation. Reaction at 2 atm yielded a compound film that was the closest to the initial precursor in terms of its composition. SEM micrographs showed rough morphology and polycrystalline structure that changed with the sulfurization pressure. The optical band gap of the films as determined by photoluminescence was found to be about 1.37 eV. These experiments demonstrated the importance of the sulfurization pressure as well as the size of the reactor internal volume in determining secondary phase formation in two-stage processed CZTS layers.
机译:在该研究中,CZTS薄膜通过两级方法生长,其涉及金属Cu,Zn和Sn层上的连续溅射沉积在Mo涂覆的玻璃基板上,然后在硫气氛中的RTP退火在1的硫气氛中为1 -2 atm。硫化在迷你反应体积中进行,提供相对S限量的环境反应膜,使用XRD,EDX,SEM,光致发光和拉曼光谱进行了表征。结果发现,在这些实验中提供的S限制性下,Cu-S二次相形成在1.5目的下生长的样品中最极端,而在较低且较高的压力下生长的薄膜显示得多较小的相分离。 2atm的反应产生了一种复合膜,即在其组合物方面最接近初始前体。 SEM显微照片显示粗糙的形态和多晶结构,随着硫化压力而变化。发现通过光致发光确定的薄膜的光带隙是约1.37eV。这些实验证明了硫化压力的重要性以及反应器内部体积的尺寸在确定两级加工CZTS层中的二次相形成时。

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