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铱酸锶薄膜中溅射过程的评估

Evaluation of Sputtering Processes in Strontium Iridate Thin Films.

作者信息

Fuentes Víctor, Balcells Lluis, Konstantinović Zorica, Martínez Benjamín, Pomar Alberto

机构信息

Instituto de Ciencia de Materiales de Barcelona, ICMAB-CSIC, Campus Universitario UAB, 08193 Bellaterra, Spain.

Center for Solid State Physics and New Materials, Institute of Physics Belgrade, University of Belgrade, Pregrevica 118, 11080 Belgrade, Serbia.

出版信息

Nanomaterials (Basel). 2024 Jan 23;14(3):242. doi: 10.3390/nano14030242.

Abstract

The growth of epitaxial thin films from the Ruddlesden-Popper series of strontium iridates by magnetron sputtering is analyzed. It was found that, even using a non-stoichiometric target, the films formed under various conditions were consistently of the perovskite-like n = ∞ SrIrO phase, with no evidence of other RP series phases. A detailed inspection of the temperature-oxygen phase diagram underscored that kinetics mechanisms prevail over thermodynamics considerations. The analysis of the angular distribution of sputtered iridium and strontium species indicated clearly different spatial distribution patterns. Additionally, significant backsputtering was detected at elevated temperatures. Thus, it is assumed that the interplay between these two kinetic phenomena is at the origin of the preferential nucleation of the SrIrO phase. In addition, strategies for controlling cation stoichiometry off-axis have also been explored. Finally, the long-term stability of the films has been demonstrated.

摘要

分析了通过磁控溅射从Ruddlesden-Popper系列锶铱酸盐外延生长薄膜的情况。结果发现,即使使用非化学计量比靶材,在各种条件下形成的薄膜始终是钙钛矿型n = ∞ SrIrO相,没有其他RP系列相的迹象。对温度-氧相图的详细检查强调,动力学机制比热力学考虑更为重要。对溅射的铱和锶物种的角分布分析表明存在明显不同的空间分布模式。此外,在高温下检测到显著的反向溅射。因此,假定这两种动力学现象之间的相互作用是SrIrO相优先成核的原因。此外,还探索了离轴控制阳离子化学计量比的策略。最后,证明了薄膜的长期稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc6b/10856326/92ac34f2bedc/nanomaterials-14-00242-g001.jpg

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