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Large Area Nanostructured Arrays: Optical Properties of Metallic Nanotubes

机译:大面积纳米结构阵列:金属纳米管的光学特性

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In this study, large area metallic nanotube arrays on flexible plastic substrates are produced by templating the growth of a cosputtered alloy using anodized aluminum oxide membranes. These nanotube arrays are prepared over large areas (ca. squared centimeters) by reducing the residual stress within the thin multilayered structure. The nanotubes are approximately 20 nm in inner diameter, having walls of <10 nm in thickness, and are arranged in a close packed configuration. Optically the nanotube arrays exhibit light trapping behavior (not plasmonic), where the reflectivity is less than 15% across the visible spectra compared to >40% for a flat sample using the same alloy. When the nanotubes are exposed to high relative humidity, they spontaneously fill, with a concomitant change in their visual appearance. The filling of the nanotubes is confirmed using contact angle measurements, with the nanotubes displaying a strong hydrophilic character compared to the weak behavior of the flat sample. The ability to easily fabricate large area nanotube arrays which display exotic behavior paves the way for their uptake in real world applications such as sensors and solar energy devices.
机译:在这项研究中,通过使用阳极氧化铝膜对共溅射合金的生长进行模板化,在柔性塑料基板上生产了大面积的金属纳米管阵列。这些纳米管阵列通过减小薄多层结构内的残余应力而在大面积(约平方厘米)上制备。纳米管的内径大约为20 nm,壁的厚度小于10 nm,并以紧密堆积的形式排列。在光学上,纳米管阵列表现出光捕获行为(不是等离子体),其中在可见光谱上的反射率小于15%,而使用相同合金的扁平样品的反射率则大于40%。当纳米管暴露于较高的相对湿度时,它们会自发地填充,随之而来的是外观的变化。纳米管的填充通过接触角测量得到确认,与扁平样品的较弱行为相比,纳米管显示出较强的亲水性。易于制造具有奇异行为的大面积纳米管阵列的能力为它们在传感器和太阳能设备等现实应用中的应用铺平了道路。

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