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Perspectives on oblique angle deposition of thin films: From fundamentals to devices

机译:薄膜斜角沉积的观点:从基础到器件

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摘要

The oblique angle configuration has emerged as an invaluable tool for the deposition of nanostructured thin films. This review develops an up to date description of its principles, including the atomistic mechanisms governing film growth and nanostructuration possibilities, as well as a comprehensive description of the applications benefiting from its incorporation in actual devices. In contrast with other reviews on the subject, the electron beam assisted evaporation technique is analyzed along with other methods operating at oblique angles, including, among others, magnetron sputtering and pulsed laser or ion beam-assisted deposition techniques. To account for the existing differences between deposition in vacuum or in the presence of a plasma, mechanistic simulations are critically revised, discussing well-established paradigms such as the tangent or cosine rules, and proposing new models that explain the growth of tilted porous nanostructures. In the second part, we present an extensive description of applications wherein oblique-angle-deposited thin films are of relevance. From there, we proceed by considering the requirements of a large number of functional devices in which these films are currently being utilized (e.g., solar cells, Li batteries, electrochromic glasses, biomaterials, sensors, etc.), and subsequently describe how and why these nanostructured materials meet with these needs.
机译:倾斜角构型已成为用于沉积纳米结构薄膜的宝贵工具。这篇综述对它的原理进行了最新的描述,包括控制薄膜生长和纳米结构可能性的原子机理,以及对将其结合到实际设备中而受益的应用的全面描述。与该主题的其他评论相反,电子束辅助蒸发技术与其他以斜角操作的方法进行了分析,其中包括磁控溅射和脉冲激光或离子束辅助沉积技术。为了解决在真空或等离子体存在下的沉积之间存在的差异,对机械模拟进行了严格的修订,讨论了诸如切线或余弦规则之类的公认范例,并提出了新模型来解释倾斜的多孔纳米结构的生长。在第二部分中,我们对其中倾斜角沉积的薄膜具有重要意义的应用进行了广泛的描述。从那里开始,我们考虑当前正在使用这些薄膜的大量功能设备(例如太阳能电池,锂电池,电致变色玻璃,生物材料,传感器等)的要求,然后描述如何以及为什么这些纳米结构材料可以满足这些需求。

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