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首页> 外文期刊>Advanced Optical Materials >Simple and Ultrafast Fabrication of Invisible Photonic Prints with Reconfigurable Patterns
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Simple and Ultrafast Fabrication of Invisible Photonic Prints with Reconfigurable Patterns

机译:具有可重配置图案的隐形光子印刷品的简单超快制造

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摘要

Photonic prints integrated with invisible and reconfigurable patterns are highly desired due to their potential applications in combining anti-counterfeiting, anti-photobleaching, and low-resource consuming. Here, a simple and fast approach is reported to fabricate invisible photonic prints, which are prepared by coating a layer of oleylamine (OAm) on the selective region of hydrophilic photonic paper. Owing to the different wettability and swelling ability between the pattern and background regions, the pattern of the as-prepared sample is invisible (Delta lambda = 0) at normal conditions, while it can be revealed with a large color contrast (Delta lambda = 140 nm) in the presence of water with a very short time (approximate to 2 s). The hiding-showing transition is fully reversible and the sample shows good performance in long lasting stability. With elaborate mask, the presented method is also capable of preparing microscopic invisible photonic print with high resolution. Moreover, the pattern of the invisible photonic print can be reconfigured repeatedly through the erasing and reconstructing process, which works well in macro/microscopic scale. The combination of invisible and reconfigurable properties as well as the invisible photonic prints with macro and microscopic patterns will facilitate their practical applications such as anti-counterfeiting, message storage, and display.
机译:由于集成了防伪,防光漂白和低资源消耗的潜在应用,因此非常需要集成有不可见和可重构图案的光子打印。在这里,据报道,一种简单而快速的方法是制造不可见的光子印刷品,该印刷品是通过在亲水性光子纸的选择性区域上涂覆一层油胺(OAm)来制备的。由于图案和背景区域之间的润湿性和溶胀能力不同,所制备样品的图案在正常条件下是不可见的(Delta lambda = 0),而可以显示出较大的色差(Delta lambda = 140)。 nm)在非常短的时间内(大约2 s)在水的存在下。隐藏显示过渡是完全可逆的,并且样品在长期稳定的情况下表现出良好的性能。利用精心制作的掩模,所提出的方法还能够制备具有高分辨率的微观不可见光子印刷品。此外,可以通过擦除和重建过程来反复重新配置不可见光子图案的图案,该图案在宏观/微观尺度上效果很好。不可见和可重新配置的属性以及具有宏观和微观图案的不可见光子印刷的结合将促进其实际应用,例如防伪,消息存储和显示。

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