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Selective electrochemical decomposition of outgrowths and nanopatterning in La0.7Sr0.3MnO3 perovskite thin films

机译:La0.7Sr0.3MnO3钙钛矿薄膜的产物的选择性电化学分解和纳米构图

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摘要

The outgrowth formation in inorganic thin films is a dramatic problem that has limited the technological impact of many techniques and materials. Outgrowths are often themselves part of the films, but are detrimental for vertical junctions since they cause short-circuits or work as defects, compromising the reproducibility and in some cases the operation of the corresponding devices. The problem of outgrowth is particularly relevant in ablation-based methods and in some complex oxides, but is present in a large variety of systems and techniques. Here we propose an efficient local electrochemical method to selectively decompose the outgrowths of conductive oxide thin films by electrochemical decomposition, without altering the properties of the background film. The process is carried out using the same set-up as for local oxidation nanolithography, except for the sign of the voltage bias and it works at the nanoscale both as serial method using a scanning probe and as parallel method using conductive stamps. We demonstrated our process using La0.7Sr0.3MnO3 perovskite as a representative material but in principle it can be extended to many other conductive systems.
机译:无机薄膜中的产物生长是一个严重的问题,已经限制了许多技术和材料的技术影响。突起物本身通常是薄膜的一部分,但对垂直结点有害,因为它们会引起短路或作为缺陷,损害再现性,并在某些情况下损害相应器件的运行。在基于烧蚀的方法和某些复杂的氧化物中,析出的问题特别重要,但存在于各种各样的系统和技术中。在这里,我们提出了一种有效的局部电化学方法,以通过电化学分解选择性地分解导电氧化物薄膜的产物,而不改变背景薄膜的特性。该过程使用与局部氧化纳米平版印刷术相同的设置进行,除了电压偏置的符号外,该过程均在纳米级起作用,既可以使用扫描探针的串行方法,也可以使用导电压模的并行方法。我们演示了使用La0.7Sr0.3MnO3钙钛矿作为代表材料的工艺,但原则上可以扩展到许多其他导电系统。

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