银钯合金薄膜库的组合分析

IF 1.9 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Physica Status Solidi A-applications and Materials Science Pub Date : 2024-07-09 DOI:10.1002/pssa.202400355
Martin Konrad, Gianina Popescu‐Pelin, Gabriel Socol, Andrei Ionut Mardare, Achim Walter Hassel
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摘要

银钯合金薄膜的组合分析显示,在所有研究的合金成分中,都形成了具有面心立方结构的固溶体。利用混合物质理论和高场模型,表明在施加阳极电位时会出现氧化物生长。电化学阻抗光谱支持氧化物形成的观点,其依据是循环伏安法测量所显示的与氧化物形成急剧增加相关的行为变化。在 4 V 电压下极化后,在 100 mHz 至 10 kHz 的频率范围内检测到了稳定的总阻抗和越来越不明显的相移,这涵盖了有源植入式医疗设备(AIMD)的常见应用范围。用兰德尔电路拟合测得的阻抗数据后,确定所研究合金的电容在 nF cm-2 范围内,并将其归因于形成的混合氧化层。电荷转移电阻在 kΩ cm-2 范围内。迄今为止,尚未发现合金成分与电容或电阻之间存在任何关联。这些发现表明,Ag-Pd 合金在 AIMD 中具有基本的适用性。
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Combinatorial Analysis of Silver‐Palladium Alloy Thin Film Libraries
Combinatorial analysis of Ag–Pd alloy thin films shows the formation of a solid solution with the face‐centered cubic structure for all investigated alloy compositions. Using mixed matter theory and the high field model, oxide growth upon applying an anodic potential is indicated. Electrochemical impedance spectroscopy supports the idea of oxide formation based on a change in behavior correlated to a sharp increase in oxide formation as indicated by cyclic voltammetry measurements. After polarization at 4 V, a stable total impedance and increasingly less‐pronounced phase shift are detected in the frequency range of 100 mHz to 10 kHz, which encompasses the common range of application of active implantable medical devices (AIMD). Upon fitting the measured impedance data with the Randles circuit, capacitances are determined in the nF cm−2 range for the investigated alloys and attributed to the formed mixed oxide layer. Charge transfer resistances are found to be in the kΩ cm−2 range. No correlation between alloy composition and capacitance or resistance can be detected so far. These findings indicate a fundamental applicability of Ag–Pd alloys for use in AIMD.
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期刊介绍: The physica status solidi (pss) journal group is devoted to the thorough peer review and the rapid publication of new and important results in all fields of solid state and materials physics, from basic science to applications and devices. Among the largest and most established international publications, the pss journals publish reviews, letters and original articles, as regular content as well as in special issues and topical sections.
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