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Repeatable and metal-independent nanotransfer printing based on metal oxidation for plasmonic color filters

机译:可重复和metal-independent nanotransfer基于金属氧化电浆的印刷颜色过滤器

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摘要

Many recently developed nanotransfer printing techniques have received much attention because of their simplicity and low cost. In addition, such techniques are suitable for fabricating nano/ microscale sensors, optical elements, and electrical devices. However, conventional nanotransfer printing methods are timeconsuming, cannot be easily used over large areas or with several different materials, and are not suitable for repeatedly transferring various materials onto the same substrate or a curved surface. Herein, a new nanotransfer printing method is introduced based on the oxidation of various metals and the formation of covalent bonds between spin-and spray-coatable adhesives and the chosen metal at low temperatures. These strong covalent bonds allow the fast transfer of the deposited materials from a polymer stamp without additional processing. A major advantage of this process is that it is metal-independent; nanowires of various metals are successfully transferred from the polymer stamp because strong covalent bonds form instantaneously between the metal and an adhesive-coated substrate. Moreover, this nanotransfer process can be used repeatedly to fabricate large-scale color filters from smaller areas of nanowires, regardless of the metal type and nanostructure orientation. Furthermore, plasmonic color filters composed of nanohole arrays can be obtained on both flat and curved surfaces.
机译:许多最近发达nanotransfer印刷因为技术得到了太多的关注他们的简单性和低成本。这种技术适用于制造纳米/微尺度传感器、光学元素,和电气设备。nanotransfer印刷方法耗时、不容易在大区域或使用几种不同的材料,并不合适不断将各种材料到相同的底物或曲面。这里,一个新的nanotransfer印刷方法介绍了基于不同的氧化金属和共价键的形成之间的旋转和spray-coatable粘合剂和选择金属在低温下。共价键允许的快速转移从聚合物沉积材料邮票额外的处理。过程是metal-independent;纳米线的各种金属都是成功的从聚合物邮票因为强劲共价键形式之间的瞬间金属和一个adhesive-coated衬底。这个nanotransfer过程可以反复使用制造大规模的颜色过滤器更小的纳米线的领域,不管金属型和纳米结构取向。此外,电浆颜色过滤器组成nanohole数组可以获得平坦的和弯曲的表面。

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