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Application-Specific Oxide-Based and Metal–Dielectric Thin-Film Materials Prepared by Radio Frequency Magnetron Sputtering

机译:通过射频磁控溅射制备的应用特异性氧化物基和金属介电薄膜材料

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摘要

We report on the development of several different thin-film functional material systems prepared by radio frequency (RF) magnetron sputtering at Edith Cowan University nanofabrication labs. While focusing on the RF sputtering process optimizations for new or the previously underexplored material compositions and multilayer structures, we disclose several unforeseen material properties and behaviours. Among these are an unconventional magnetic hysteresis loop with an intermediate saturation state observed in garnet trilayers, and an ultrasensitive magnetic switching behaviour in garnet-oxide composites (GOC). We also report on the unusually high thermal exposure stability observed in some nanoengineered metal−dielectric multilayers. We communicate research results related to the design, prototyping, and practical fabrication of high-performance magneto-optic (MO) materials, oxide-based sensor components, and heat regulation coatings for advanced construction and solar windows.
机译:我们报告了在伊甸园大学纳米制造实验室的射频(RF)磁控溅射制备了几种不同薄膜功能材料系统的开发。虽然专注于RF溅射工艺对新的或以前过光的材料组合物和多层结构的优化,但我们公开了几种无法预料的材料性质和行为。其中,是一种非常规磁滞回路,其在石榴石三层中观察到中间饱和状态,以及石榴石复合材料(GOC)中的超敏感磁力切换行为。我们还报告了一些纳米工程金属介电多层观察到的异常高的热曝光稳定性。我们沟通了与高性能磁光(MO)材料,氧化氧化物的传感器组件的设计,原型制作和实际制造相关的研究结果,以及用于先进的建筑和太阳能窗口的热调节涂层。

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