使用聚四氟乙烯环实验室制备用于沉积 SOFC 薄膜电极的 LSM 和 LSF 溅射靶材

Ramin Babazadeh Dizaj, Nastaran Sabahi
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摘要

溅射靶材的制造有别于陶瓷加工的传统方法,主要是因为其生产数量往往有限。在这种情况下,热压技术的应用大大简化了溅射靶材的制造过程,可以在压制过程中精确控制靶材的密度和尺寸。但是,如果没有热压机,制作过程就需要大量的前期工作,而由于产量有限,要证明这些前期工作的合理性可能具有挑战性。本研究利用聚四氟乙烯(PTFE)环作为填充粉末的压实模具。随后,模具在平行压盘之间变形,从而有效压实粉末。这种方法的特点是压制过程中环的内径变化极小。这种方法通过制造 2 英寸(La0.5Sr0.5)MnO3-δ(LSM)和(La0.8Sr0.2)FeO3-δ(LSF)靶来体现,其中可变形模具的尺寸是根据涉及较小直径聚四氟乙烯环的初步实验确定的。这一制造工艺的结果是成功制造出了高密度的溅射靶材,其密度远在溅射枪的公差范围之内。进一步的测试包括使用制备的靶材成功沉积薄膜 LSM-LSF 复合阴极,用于 SOFC 应用。
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Laboratory preparation of LSM and LSF sputtering targets using PTFE rings for deposition of SOFC thin film electrodes
The manufacturing of sputtering targets diverges from the conventional methods in ceramic processing, primarily because the quantities produced are frequently limited. The application of hot-press in this scenario significantly simplifies the sputter target fabrication process, allowing precise control over both target density and dimensions during pressing. However, without a hot press, the fabrication necessitates substantial preliminary efforts, which may be challenging to justify due to the restricted production volume. This study utilizes polytetrafluoroethylene (PTFE) rings as compaction dies filled with powders. Subsequently, the die is deformed between parallel platens, effectively compacting the powders. The method relies on the characteristic that the pressing results in minimal change in the internal diameter of the ring. This approach was exemplified through the creation of 2-inch (La0.5Sr0.5) MnO3-δ (LSM) and (La0.8Sr0.2) FeO3-δ (LSF) targets, where the deformable die was sized based on preliminary experiments involving smaller-diameter PTFE rings. The outcome of this fabrication process successfully produced sputter targets with high density, well within the tolerances of the sputter gun. Further tests involved using the prepared targets for the successful deposition of thin film LSM-LSF composite cathodes for SOFC applications.
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